| Joint Session |
| Joint
Session D: Fundamental Science of Plasma CVD and Its Application |
| September 8 9:00`12:45 |
| 8a-ZV-@/ I,II |
| £’ |
1 |
Deposition of clusterless a-Si:H films using a
multi-hollow plasma CVD reactor with magnets |
Kyushu Univ. 1@*Nakamura William Makoto@1, Sato
Hiroshi 1, Miyahara Hiroomi 1, Koga Kazunori 1, Shiratani Masaharu 1 |
| |
2 |
Synthesis of Κc-Si thin films from SiH2Cl2
utilizing the low-pressure high-density microwave plasma: Role of chlorine
in the growth of Κc-Si films |
Saitama Univ. 1,RIKEN 2,JST 3@*NaoyukiOhse 1,Kazu
Hamada 1,Saha Jhantu 1,Tomohiro Kobayasi 2,Yuitirou Takemura 3,Hajime Shirai
1 |
| ’ |
3 |
Room Temperature and High Rate Synthesis of Nano
Silicon Particles Using Pulse Modulated UHF SiH4/H2
PlasmaiVIj |
Nagoya Univ. 1, NIMS 2@*Eiji Takahashi 1, Chikyow
Toyohiro 2, Hori Masaru 1 |
| ’ |
4 |
Production of Large-Area High-Density Plasma and
Deposition of mc-Si Thin Film by Surface Wave at 915 MHz |
Nagoya Univ. 1,2 Chubu Univ. 3, AIST 4@Takanishi
Yudai 1, Endo Hirotaka 1, Hayashi Takanobu 1, Nakao Sachiko 1, Ishijima
Tatsuo 2, Toyoda Hirotaka 1, Sugai Hideo 3, Masuda Atsushi 4, Kondo Michio
4 |
| £’ |
5 |
Ultrafast deposition of microcrystalline Si film
by using a high density microwave plasma |
RCPV AIST1, The Furukawa Electric Co. Ltd.2, TIT.3
@Haijun Jia1, Hiroshi Kuraseko 2,3, Hiroyuki Fujiwara1, Michio Kondo1,3 |
| ’ |
6 |
Selective growth of silicon by Atmospheric pressure
Plasma Enhanced Chemical Transport |
Osaka Univ. 1@Kazuya Kishimoto 1, Tetsuya Mori
1, Hiromasa Ohmi 1, Hiroaki Kakiuchi 1, Kiyoshi Yasutake 1 |
| ’ |
7 |
CVD Chamber Cleaning Using Pulse Time Modulated
F2 Gas Plasma |
Tohoku Univ. 1, Showa Denko 2, AIST 3@*Sato Aiko
1, Hoshino Yasuyuki 2, Ozaki Takuya 1, Kondo Michio 3, Samukawa Seiji 1 |
| |
|
Break 10:45`11:00 |
|
| |
8 |
Infrared Spectroscopy of Hydrogen Plasma Treatment
on Amorphous Carbon Films (2) |
Dep. of EEE Nagasaki Univ.1, Graduate school of
Sci. and Technol. Nagasaki Univ. 2, Toyo Advanced Technologies Co. Ltd.3@*Shinoahara
Masanori1, Inayoshi Takanori2, Cho Ken1, Shibasaki Takashi1, Matsuda Yoshinobu1,
Fujiyama Hiroshi2, Nakatani Tatsuyuki2,3 |
| |
9 |
Deposition of Carbon Films with Controlling the
Plasma Space Potential of Surface Wave exited Plasma |
Univ. of Tokyo 1@*Dongmin Kim 1, Hiroyuki Ohsaki
1 |
| ’ |
10 |
Phase control of nanocrystaline diamond films by
enhancing C2 growth chemistry |
Kyushu Univ. 1@*Ikeda Tomohiro 1, Teii Kungen 1 |
| |
11 |
MD simulations for CVD deposition of DLC on Co
surface |
Nagoya Univ. 1@Miyazaki Toshikuni 1, Yoshida Tomohiko
1 |
| |
12 |
Plasma-enhanced CVD of cubic boron nitride (cBN)
films under ultralow-energy ion impact |
Kyushu Univ. 1, NIMS 2@Teii Kungen 1, Yamao Ryota
1, Matsumoto Seiichiro 2 |
| |
13 |
PE-CVD of carbon films using adamantane and its
derivatives for low-k applications |
IIC Kyoto Univ. 1, GSE Kyoto Univ. 2, Idemitsu
Kosan 3@*Shirafuji Tatsuru 1, Nishimura Yoshiyasu 2, Ishii Hirotoshi 3,
Fujita Shizuo 1, Tachibana Kunihide 2 |
| |
14 |
Damage-Free Passivation of CNT-FET by Microwave
Plasma CVD |
Nagoya Univ. 1, Chubu Univ. 2@*Takada Noriharu
1, Toyoda Hirotaka 1, Sugai Hideo 2, Nakashima Yasuhiro 1, Ohno Yutaka 1,
Mizutani Takashi 1 |
| Joint Session
E: Spintoronics and Nanomagnetics |
| September 4 16:30`18:00 |
| 4p-S-@/ I,III |
| |
1`13@12:45`16:15i13.4 III-V Nitride Epitaxial
Growthj |
| |
|
Break 16:15`16:30 |
|
| |
14 |
Magnetoresistance Effect of Ni80Fe20/Alq3/Ni80Fe20
Junction by Planer-Type Structure |
JAIST 1, Tohoku Univ. 2@Shikoh Eiji 1, Fujiwara
Akihiko 1, Ando Yasuo 2 |
| ’ |
15 |
Preparation of lateral organic spin-valves |
Osaka Univ ° 1,ILE 2,TITECH 3,JST-CREST 4@*Ikegami
Tomonori 1,Kawayama Iwao 2,Tonouchi Yoshimasa 2,Yamashita Yoshihiro 3,Tada
Hirokazu 1,4 |
| |
16 |
Composition dependence of magnetic and magnetotransport
properties in nanogranular C60-Co films |
IMR Tohoku Univ. 1, Advanced Research Center JAEA.
2, Dept. of Energy Science and Technology Kyoto Univ. 3,@*Sugai Isamu 1,2,
Sakai Seiji 2, Mitani Seiji 1, Matsumoto Yoshihiro 2, Takanashi Koki 1,2,
Naramoto Hiroshi 2, Pavel Avramov 2, Okayasu Satoru 2, Maeda Yoshihito 2,3 |
| |
17 |
Study of molecular structure and electronic states
in C60-Co thin films |
ASRC JAEA 1,SRRC JAEA 2, IMR Tohoku Univ. 3, Dept.
of Energy Science and Technology Kyoto Univ. 4 @* Matsumoto Yoshihiro 1,
Sakai Seiji 1, Sugai Isamu 1,3, Naramoto Hiroshi 1, Hirao Norie 2, Baba
Yuji 2, Okayasu Satoru 1, Maeda Yoshihito 1,4 |
| £ |
18 |
Spintronics device using direct synthesis of single-walled
carbon nanotubes from ferromagnetic electrodes |
School of Materials Science, Japan Advanced Inst.
of Science and Technology@*Mohd Ambri Mohamed 1, Nobuhito Inami 1, Eiji
Shikoh 1, Yoshiyuki Yamamoto 1, Hidenobu Hori 1, Akihiko Fujiwara 1 |
| |
19 |
Spin injection into a graphene thin film at room
temperature |
Grad.Sch.Eng.Sci, Osaka Univ.@Megumi Ohishi, *Masashi
Shiraishi, Ryo Nouchi, Takayuki Nozaki, Teruya Shinjo, Yoshishige Suzuki |
| Joint Session
E: Spintoronics and Nanomagnetics |
| September 5 9:00`19:00 |
| 5a-S-@/ I,III |
| ’ |
1 |
Characterization of Heusler alloys on amorphous
insulator films formed by RTA method |
ISEL Tokyo Inst. of Tech. 1, Dept. of Electronic
Eng. Univ. of Toyo 2@Takamura Yota 1, Nagahama Yohei 1, Nakane Ryosho 2,
Munekata Hiro 1, Sugahara Satoshi 1 |
| |
2 |
Preparation of Heusler alloys using germanium-on-insulator
(GOI) substrates and their characterization |
ISEL Tokyo Inst. of Tech. 1, Dept. of Electronic
Eng. Univ. of Tokyo 2@Takamura Yota 1, Nishijima Akira 1, Nakane Ryosho
2, Munekata Hiro 1, Sugahara Satoshi 1 |
| |
3 |
Composition dependence of magnetic properties on
Co-Mn-Si alloy thin films |
Tohoku Univ. 1, Tohoku Univ.IMR 2, Tohoku Univ.Niche
3@*Hirose Naoki 1, Sakuraba Yuya 2, Oogane Mikihiko 1, Ando Ysuo 1, Miyazaki
Terunobu 3 |
| |
4 |
Theoretical study on interface oxidation of Co2YZ/MgO/Co2YZ
magnetic tunnel junction |
RIEC Tohoku Univ. 1@*Yoshio Miura, Kazutaka Abe,
Masafumi Shirai |
| |
5 |
Effects of spin-flip scattering on tunnel magnetoresistance
in junctions with half-metallic Heusler alloy |
Nagoya Univ. 1, Kansai Univ. 2@Ichiro Takada 1,
Jun-ichiro Inoue 1, Hiroyoshi Itoh 2 |
| |
|
Break 10:15`10:30 |
|
| ’ |
6 |
Magnetotransport properties of magnetic tunnel
junctions with Co2MnAlxSi1-x electrode |
Tohoku Univ. IMR 1, Tohoku Univ. 2@Sakuraba Yuya
1, Mikihiko Oogane 2, Yauo Ando 2, Koki Takanashi 1 |
| ’ |
7 |
Structural and magnetic properties of Co2MnSi
thin films epitaxially grown on GaAs with MgO interlayer |
Hokkaido Univ. 1@*Imai Yosuke 1, Kawagishi Saori
1, Matsuda Ken-ichi 1, Uemura Tetsuya 1, Yamamoto Masafumi 1 |
| ’ |
8 |
Fabrication of fully epitaxial MTJs using a Co2MnSi
thin film as an upper free layer |
Hokkaido Univ. 1@*Masuda Masahiro 1, Uemura Tetsuya
1, Matsuda Ken-ichi 1, Yamamoto 1 |
| |
9 |
Reduction of silicidation temperature of Fe3Si
thin films using an ultra-thin Si capping layer |
Dept. of Electronic Eng., Univ. of Tokyo 1, ISEL,
Tokyo Inst. Tech. 2, Dept. Electronics and Appl. Phys., Tokyo Inst. Tech.
3@Ryosho Nakane 1,Masaaki Tanaka 1, Satoshi Sugahara 2,3 |
| ’ |
10 |
Epitaxial growth and magnetic properties of Mn
doped Ge thin films on Si(001), (110), and (111) substrates |
Dept. of Electronic Eng., Univ. of Tokyo 1, ISEL,
Tokyo Inst. of Tech. 2, Dept. Electronics and Appl. Phys., Tokyo Inst. Tech.
3@Yada Shinsuke 1, Masaaki Tanaka 1, Satoshi Sugahara 2,3 |
| |
11 |
Crystallographic and magnetic properties of epitaxially
grown ferromagnetic semiconductor Ge1-xFex
thin films on Si(001) substrates |
Dept. Electronic Eng., Univ. of Tokyo 1, ISEL,
Tokyo Inst. Tech. 2, Dept. Electronics and Appl. Phys., Tokyo Inst. Tech.
3@*Shuto Yusuke 1, Tanaka Masaaki 2, Sugahara Satoshi 2,3 |
| |
|
Lunch 12:00`13:00 |
|
| 5p-S-@/ I,III |
| |
1 |
Growth of Magnetic Semiconductor Si:Ce Thin Films
on Ferroelectric layer |
Graduate School of Engineering, Osaka Pref. Univ.
1@*Shindo Daisuke 1, Terao Takemi 1 |
| |
2 |
Structural Analysis and the Magnetic Properties
of Si:Ce Ultra-Thin Films with High Ce Concentration |
Osaka Pref. Univ. 1@Takemi Terao 1, Kenji Fujii
1, Yohishiro Nishimura 1 |
| ’ |
3 |
Ferromagnetism of manganese nano-silicide in silicon |
NTT Basic Research Labs. 1, Keio Univ. 2@Shin Yabuuchi
1 2, Yukinori Ono 1, Masao Nagase 1, Hiroyuki Kageshima 1, Akira Fujiwara
1, Eiji Ohta 2 |
| |
4 |
First-principles study on magnetic properties of
manganese nano-silicide in silicon |
NTT Basic Research Labs. 1, Keio univ. 2@Shin Yabuuchi
1 2, Hiroyuki Kageshima 1, Yukinori Ono 1 , Masao Nagase 1, Akira Fujiwara
1, Eiji Ohta 2 |
| |
5 |
Influence of sputtering gases on crystal structure
of Mn-Ir/Co-Fe bilayers |
ULVAC 1@*Imakita Ken-ichi 1, Kobayashi Keiko 1,
Ono Kazunaga 1, Morita Tadashi 1, Yamamoto Tadashi 1, Misawa Shunji 1, Inayoshi
Sakae 1, Murakami Hirohiko 1 |
| |
6 |
Fabrication and magneto-transport property of Ni
buried in porous almina film formed on Si substrate |
Kansai Univ. 1@Kawakami Mota 1,Takafumi Yamashita
1,Jo Nishikawa 1,Yu Mandai 1,Naoya Hosomi 1,Shoso Shingubara 1 |
| |
7 |
Numerical calculation of permeability for meta-materials
using magnetic nanocomposites |
NAIST 1, Hitachi Metals 2, Tohoku Univ. 3@*Satoshi
Tomita 1, Chiharu Mitsumata 2,3 |
| |
8 |
Fabrication of FePt film by electroplating on Si
substrate |
Kandai Univ. 1@Hironori Mori 1,Takafumi Yamashita
1, Shinji Ukita 1, Ayumi matuda 1,Shoso Shingubara 1 |
| ’ |
9 |
Fabrication and the magnetic characteristics of
L10-CoNiPt epitaxial thin films |
Tohoku Univ. 1,Tohoku Univ.IMR 2,Tohoku Univ.Niche
3@*Kim Gukcheon 1,Sakuraba Yuya 2,Oogane Mikihiko 1,Ando Yasuo 1,Miyazaki
Terunobu 3 |
| |
10 |
Magnetic Property and conductance of 2D assembled
Pd nanoparticles |
Keio Univ 1,Tokyo Inst. Tech 2@*Takao Okamoto 1,
Shin Yabuuchi 1, Hideyuki Maki 1, Tetsuya Sato 1, Eiji Ohta 1, Tomoyasu
Taniyama 2 |
| |
|
Break 15:30`15:45 |
|
| |
11 |
Electric-field control of spin transport in single
electron transistors with ferromagnetic electrodes |
IIS,Univ.Tokyo 1,RCAST, Univ.Tokyo 2, MSL, Tokyo
Inst.Tech. 3, CINQIE, Univ.Tokyo 4@Hamaya Kohei 1, Kitabatake Miyuki 1,
Shibata Kenji 1, Jung M. 1, Kawamura Minoru 1, Ishida Satomi 2, Taniyama
Tomoyasu 3, Hirakawa Kazuhiko 1,4, Arakawa Yasuhiko 1,2,4, Machida Tomoki
1,4 |
| ’ |
12 |
Young Scientist Award for the Presentation of an
Excellent Paper
Cr(001)c(2x2)Δ\¬\ΚΜXsΞΙdqσΤ |
Hokkaido Univ. 1, Mie Univ. 2@*Hirofumi Oka 1,
Kohji Nakamura 2, Agus Subagyo 1, Kazuhisa Sueoka 1 |
| |
13 |
Characterization of the nonreciprocal reflectivity
in a ferromagnetic metal thin film |
Tokyo Univ. of Agri. & Tech 1@Mori Toshiaki 1,Hiromasa
Shimizu1 |
| |
14 |
Crystallographic characterization of MnSb layers
for spin-photonics devices |
Tokyo Inst. of Tech. 1, RCAST, Univ. of Tokyo 2,
Tokyo Univ. of Agri. & Tech. 3@*Ogawa Yusuke 1, Schallenberg Timo 1, Munekata
Hiroo 1, Amemiya Tomohiro 2, Shimizu Hiromasa 3, Nakano Yoshiaki 2 |
| |
15 |
Ab initio study on electronic structure and magnetism
of Fe/Si junction |
Kansai Univ. 1, Nagoya Univ. 2@Hiroyoshi Itoh 1,
Syuta Honda 2, Jun-ichiro Inoue 2 |
| |
16 |
Interfacial electronic structure and spin-injection
in ferromagnetic metal / semiconductor junctions |
Nagoya Univ. 1, Kansai Univ. 2@*Honda Syuta 1,
Inoue Jun-ichiro 1, Itoh Hiroyoshi 2 |
| |
17 |
The spin coherence length in ferromagnetic metals |
Tohoku Univ., Tohoku Univ. IMR, AIST nano-tech.@*Yakata
Satoshi 1,Taniguchi Tomohiro 2 3, Oogane Mikihiko 1, Ando Yasuo 1, Imamura
Hiroshi 3 |
| |
18 |
Direct and inverse spin Hall effects in FePt/Au
lateral structures |
IMR,Tohoku University 1,AIST 2@*Hasegawa Yu 1,Seki
Takeshi 1,Mitani Seiji 1,Takahashi Saburo 1,Imamura Hiroshi 2,Maekawa Sadamichi
1,Takanashi Koki 1 |
| £ |
19 |
Spin Hall effect in metallic based nanostructures |
ISSP Tokyo Univ.1, FRS Riken2@*Vila Laurent1, Kimura
Takashi1,2, Otani Yoshichika1,2 |
| |
20 |
Joule heating effect in current-excited magnetization
dynamics |
FRS RIKEN 1, ISSP Univ. of Tokyo 2, HARL Hitachi
3, Hitachi High-Technologies 4@Yoshihiko Togawa 1, Takashi Kimura 1,2, Ken
Harada 1,3, Tetsuya Akashi 3,4, Tsuyoshi Matsuda 1,3, Akira Tonomura 1,3,
Yoshichika Otani 1,2 |
| |
21 |
Detection of current-induced magnetic domain wall
motion/deformation using anisotropic magnetoresistance effect |
Osaka Univ. 1, IIAS 2@*Hiroaki Maekawa 1, Takayuki
Nozaki 1, Ryo Nouchi 1, Masashi Shiraishi 1, Teruya Shinjo 1,2, and Yoshishige
Suzuki 1 |
| |
22 |
Magnetization Switching in Patterned Ferromagnetic
Thin Films Using Microwave Magnetic Fields |
kyushu Univ. 1@*Nozaki Yukio, Ohta Masanao, Taharazako
Shu-ichi, Tateishi Kentaro, Yoshimura Satoru, Matsuyama Kimihide |
| |
23 |
Observations of a spin-torque diode effect in a
granular wire |
Osaka Univ. 1,IISA 2@*Wada tomoyuki 1,Nozaki Takayuki
1,Ohta Kenta 1,Maruyama Takuto 1,Nouchi Ryo 1,Shiraishi Masashi 1,Shinjo
Teruya 1,2,Suzuki Yoshishige 1 |
| Joint Session
E: Spintoronics and Nanomagnetics |
| September 6 9:00`12:30 |
| 6a-S-@/ I,III |
| |
1 |
Spin pumping from Rashba spin-orbit-coupled electron
systems |
Grad. Sch. of Eng. Sci., Osaka Univ.@Kiminori Hattori
1 |
| |
2 |
Spin transport through a GaAs / AlGaAs / InGaAs
heterostructure incorporating a potential barrier and its detection |
Imaging Sci.&Eng.Lab. Tokyo Inst. & Tech., 1@*Jun-ji
Hayafuji 1,Yuichi Gyoda 1,Yarimizu Masashi 1,Terui Wataru1,Munekata Hiroo |
| ’ |
3 |
Manipulation of electron state in a few-electron
In0.56Ga0.44As vertical quantum dot with MOS-gate
structure |
ERATO-JST 1,Tohoku Univ. RIEC 2@*Tomohiro Kita
1,2, Daichi Chiba 1,2, Yuzo Ohno 2, Hideo Ohno 1,2 |
| £ |
4 |
Dependence of occurrence of anomalous Hall effect
in Be/Si pair delta-doped GaAs structure on MBE growth condition |
Japan Advanced Institute of Science and Technology@@*Dae-Won
Jung, Jung-Pil Noh, A. M. Z. Touhidul Islam, Nobuo Otsuka |
| |
5 |
Formation of ferromagnetic clusters and Kondo effect
in Be/Si delta-doped GaAs structures |
Japan Advanced Institute of Science and Technology@@*Otsuka
Nobuo, Noh Jungpil |
| ’ |
6 |
Magneto-transport properties in InP/InGaAs/InAlAs
two dimensional electron gas |
Tohoku Univ. 1, CREST-JST 2,@*Kunihashi Yoji 1,
Kohda Makoto 1,2, Nitta junsaku 1,2 |
| |
|
Break 10:30`10:45 |
|
| £ |
7 |
Spin injection in FM/2DEG/FM system using the In0.75Ga0.25As/
In0.75Al0.25As inverted HEMT structures |
CNMT, JAIST@Hyonkwan Choi,Tomoyasu Kakegawa, *Syoji
Yamada |
| ’ |
8 |
High Circularly Polarized Light from Highly Uniform
InAs Quantum Dots: Rate Equation Analysis including Spin Pauli Blocking |
Waseda Univ. 1, Univ. of Electro-Comm. 2@*Kusunoki
Koji 1, Tsukiji Nobukazu 2, Umi Takehiko 1, Yamaguchi Koichi 2, Tackeuchi
Atsushi 1 |
| ’ |
9 |
Spatial mapping of spin current in semiconductor
by Kerr microscopy |
RIEC Tohoku Univ. 1, ERATO JST 2@*Shunichiro Matsuzaka
1, Yuzo Ohno 1, Hideo Ohno 1 2, |
| |
10 |
Control of Persistent Spin Helical (PSH) Motion
and its Application toUltra-low Power Spin Transistor Circuits |
Hokkaido Univ. 1, JST 2@* Kanji Yoh 1,2, Munekazu
Ohno 1 |
| |
11 |
Vanishing of spin relaxation anisotropy in spin-transistor
structure |
RCIQE,Hokkaido Univ.1CREST-JST 2@*Munekazu Ohno1,
Kanji Yoh1,2 |
| |
12 |
Optical detection of I=3/2 nuclear spin coherence
in a GaAs quantum well |
RIEC Tohoku Univ. 1,ERATO-JST 2@Kondo Yusuke 1,*Ono
Masaaki 1,Matsuzaka Shunichiro 1,Morita Ken 2,1,Ohno Yuzo 1,Ohno Hideo 1,2 |
| |
13 |
Extermal field compensation by nuclear field in
single self-assembled InAlAs quantum dots |
Hokkaido Univ. 1, RIES 2, JST CREST 3@*Adachi Satoru
1,3, Kaji Reina 1, Sasakura Hirotaka 3, Muto Shunichi 1,3, Kumano Hidekazu
2,3, Suemune Ikuo 2,3 |
| Joint Session
E: Spintoronics and Nanomagnetics |
| September 7 9:00`19:00 |
| 7a-S-@/ I,III |
| |
1 |
Physical properties of undoped GaGdN and Si-doped
GaGdN grown at low temperatures |
Osaka Univ. ISIR 1@*Y. K. Zhou 1, S. Kimura 1,
Y. Hiromura 1,S. Emura 1, S. Hasegawa 1, H. Asahi 1 |
| |
2 |
Growth of Nitride-based MTJ structures on Si substrates |
Inst. of Appl. Phys, Univ. of Tsukuba@*Narahara
Akari, Suemasu Takashi |
| ’ |
3 |
Microstructure and magnetic properties of Fe@ITO
thin films grown on YSZ substrates |
KIT 1, NIMS 2, Osaka U 3@*Koichi Okada 1, Shigemi
Kohiki 1, Hirokazu Shimooka 1, Hiroyuki Deguti 1, Masaki Mito 1, Masanori
Mitome 2, Yoshio Bando 2, Takahiro Ohno 3, Hidekazu Tanaka 3, Tomoji kawai
3 |
| |
4 |
Partial oxygen pressure dependent magnetic property
of anatase Fe:TiO2 |
Univ. of Tokyo 1,KAST 2@*Enju Sakai 1, Taro Hitosugi
1,2, Toshihiro Shimada 1,2, Yasushi Hirose 2, T. Hasegawa1, 2 |
| |
5 |
Magnetic characteristics of Fe3O4
thin film study by means of STM/Spin-SEM |
Hokkaido Univ.@*Kaji Eisaku, Agus Subagyo, Sueoka
Kazuhisa |
| |
6 |
Novel magneto-optical phenomena in a polar ferromagnet
artificially constructed with correlated electron oxides |
CERC-AIST 1,ERATO-MF 2,ERATO-SSS 3,IMRAM-Tohoku
U. 4, IMR-Tohoku U. 5, U. Tokyo 6@Hiroyuk Yamada 1, Noriaki Kida 2,3, Thomas
Lottermoser 3, Hiroshi Sato 1, Takahisa Arima 3,4, Masashi Kawasaki 1,5,
Yoshinori Tokura 1,2,3,6 |
| |
|
Break 10:30`10:45 |
|
| |
7 |
First-principles calculation of electronic state
and conductance in FePt/MgO/FePt(001) magnetic tunnel junctions |
Tohoku Univ. RIEC 1@*Yujiro Taniguchi 1, Yoshihiro
Oba 1,Yoshio Miura 1, Kazutaka Abe 1, Masafumi Shirai 1 |
| ’ |
8 |
Dependence of tunnel magnetoresistances in CoFe/MgO/CoFe
MTJs on MgO barrier thickness |
Hokkaido Univ. 1@*Taira Tomoyuki 1,Ishikawa Takayuki
1,Hakamata Shinya 1,Matsuda Ken-ichi 1,Uemura Tetsuya 1,Yamamoto Masafumi
1 |
| |
9 |
Relationship Between Tunnel Magnetoresistance Effect
and Film Stack Structure for MgO Barrier MTJs |
RIEC, Tohoku Univ. 1, ARL, Hitchi, Ltd. 2, Present:
Fujitsu Lab. 3@*Shoji Ikeda 1, Jun Hayakawa 2,1, Young Min Lee 1,3, Katsuya
Miura 2,1, Fumihiro Matsukura 1, Hideo Ohno 1 |
| |
10 |
JJAP Young Scientist Award
Half-Metallic Properties in C2MnSi Full-Heusler Alloy |
Tohoku University@Yuya Sakuraba |
| |
11 |
JJAP Young Scientist Award
Investigation of Spin Voltaic Effect in a p-n Heterojunction |
Tokyo Institute of Technology@Tsuyoshi
Kondo |
| |
|
Lunch 12:10`13:00 |
|
| 7p-S-@/ I,III |
| |
1 |
JJAP Paper Award
Spin-Dependent Transport in C60-Co Nano-Composites |
Osaka University@Shinji Miwa, Masashi Shiraishi,
Masaki Mizuguchi, Teruya Shinjo and Yoshishige Suzuki |
| |
2 |
Forecast of spin transfer torque switching time
at T > 0K by LLG micro magnetic simulation |
Renesas Technology 1@*Kawabata Kiyoshi 1, Ishikawa
Kiyoshi 1, Inoue Yasuo 1 |
| |
3 |
Reduction in Switching Current for Spin Transfer
Torque Magnetization Reversal Using Pulsed Magnetic Field |
Hitachi. Ltd, ARL 1, Univ. Paris Sud 2@*Kenchi
Ito 1, Thibaut Devolder 2, Claude Chappert 2 |
| |
4 |
Effect of ferromagnetic layer thickness and composition
on CIMS in MgO barrier magnetic tunnel junctions with synthetic ferrimagnetic
free layers |
Hitachi ARL 1, RIEC Tohoku Univ. 2, Fujitsu 3@*Hayakawa
Jun 12,Ikeda Shoji 2, Miura Katsuya 1, Young Min Lee 23, Sasaki Ryutaro
2, Meguro Toshiyasu 2, Matsukura Fumihiro 2, Takahashi Hiromasa 12, Ohno
Hideo 2 |
| |
5 |
Bias voltage dependence of spin torque |
AIST 1, Osaka Univ. 2 @H. Kubota 1, A. Fukushima
1, K. Yakushiji 1, T. Nagahama 1, S. Yuasa 1, K. Ando 1, Y. Suzuki 1,2 |
| ’ |
6 |
The dependence of spin-transfer switching on CoFeB
composition in CoFeB/MgO/CoFeB junctions |
Tohoku Univ. 1,Tohoku Univ.Niche 2@*Daisuke Watanabe
1, Mikihiko Oogane 1, Yasuo Ando 1, Terunobu Miyazaki 2 |
| |
7 |
FePt Composition Dependence of the Circular Polarization
of FePt/MgO/GaAs spin-LEDs |
Tokyo Univ. of Sci. Yamaguchi, NRI-AIST @*Manago
Takashi, Sinsarp Asawin, Takano Fumiyoshi, Akinaga Hiroyuki |
| ’ |
8 |
Spin-dependent tunneling in fully epitaxial Fe/Cr/MgO/Fe
MTJs |
AIST 1, Osaka Univ. 2@*Matsumoto Rie 1,2, Fukushima
Akio 1, Katayama Toshikazu 1, Nagahama Taro 1, Suzuki Yoshishige 1,2, Yuasa
Shinji 1, Ando Koji 1 |
| ’ |
9 |
Real time observation of spin transfer switching
for MgO based ferromagnetic tunnel junctions |
Tohoku Univ. 1, NICHe, Tohoku Univ. 2@*Aoki Tatsuya
1, Watanabe Daisuke 1, Oogane Mikihiko 1, Ando Yasuo 1, Miyazaki Terunobu
2 |
| |
10 |
Differential conductance measurement of magnetic
tunnel junctions |
Osaka Univ. 1, AIST 2@*Nishioka Shingo 1, Matsumoto
Rie 2,1, Tomita Hiroyuki 1, Nozaki Takayuki 1, Shiraishi Masashi 1, Fukushima
Akio 2, Yuasa Shinji 2, Suzuki Yoshishige 1,2 |
| |
11 |
Observation of current-induced domain wall motion
using a tunnel magnetoresistance effect |
Osaka Univ. 1@*Nozaki Takayuki 1, Maekawa Hiroaki
1, Nouchi Ryo 1, Shiraishi Masashi 1, Suzuki Yoshishige 1 |
| ’ |
12 |
Generation and detection of spin current using
coplanar wave-guide |
RIEC Tohoku Univ. 1,ERATO-JST 2,ARL,Hitachi Ltd.
3@*Sakamoto Takuma 1,Matsukura Fumihiro 1,2,Ikeda Shoji 1,Hayakawa Jun 3,1,Ohno
Hideo 1,2 |
| |
|
Break 16:15`16:30 |
|
| |
13 |
Phase and Amplitude Noise Spectra of Spin-Transfer
Oscillators |
Toshiba R&D Center@Mizushima Koichi, Kudo Kiwamu,
Sato Rie |
| |
14 |
Amplitued dependent linewidths of a tunneltype
spin-transfer oscillator |
Toshiba R&D Center@Sato Rie, Saito Yoshiaki, Mizushima
Koichi |
| |
15 |
Random number generator by spin-torque switching |
AIST-NeRI@Fukushima Akio 1, Kubota Hitoshi 1, Yakushiji
Kay 1, Yuasa Shinji 1, Ando Koji 1 |
| |
16 |
Proposal and theoretical analysis of pseudo spin-MOSFETs
using MTJ devices |
Tokyo Inst. Tech. 1, Tokyo Inst. Tech. 2 @Yamamoto
Shuu'ichirou 1, *Sugahara Satoshi 1,2 |
| |
17 |
Application of pseudo spin-MOSFET/spin-MOSFET for
non-volatile SRAM/latch circuits |
Tokyo Inst. Tech.@*Shuu'ichirou Yamamoto , Satoshi
Sugahara |
| |
18 |
Non-volatile SRAM/latch circuits using MTJ devices
with spin transfer torque magnetization switching |
Tokyo Inst. Tech.@*Shuu'ichirou Yamamoto , Satoshi
Sugahara |
| |
19 |
Spin-transfer switching and thermal stability in
an epitaxial FePt/Au/FePt |
AIST 1@*Yakushiji Kay 1, Yuasa Shinji 1, Nagahama
Taro 1, Fukushima Akio 1, Kubota Hitoshi 1, Katayama Toshikazu 1, Ando Koji
1 |
| |
20 |
The strain effect on MRAM characteristic |
Renesas Technology Corp. 1 @*Mikio Tsujiuchi 1,Shunichi
Narumi 1, Shuichi Ueno 1, Masahiro Shimizu 1, Yasuo Inoue 1 |
| |
21 |
Pulse width dependence of thermal stability parameter
in MgO-MTJ element |
AIST-NeRI 1, Tsukuba Univ. 2@Morota Misako 1,2,
Fukushima Akio 1, Kubota Hitoshi 1, Yakushiji Kay 1, Yuasa Shinji 1,2, Ando
Koji 1 |
| |
22 |
TDDB Study of Magnetic Tunnel Junction with MgO
Barrier |
FUJITSU LABORATORIES LTD.@*C. Yoshida, Y. M. Lee,
M. Kurasawa, M, Aoki, Y, Sugiyama |
| Joint Session
E: Spintoronics and Nanomagnetics |
| September 8 9:00`12:45 |
| 8a-S-@/ I,III |
| ’ |
1 |
Growth of zb-MnAs films on GaAs (111)B substrates
by high temperature MBE |
School of Engineering Tokyo Univ. 1, IIS Tokyo
Univ. 2, KAST 3, JST-CREST 4 @*Kubo Kotaro 1, Kanai Ken 1, Kato Yousuke
1, Ohta Jitsuo 2, Fujioka Hiroshi 2,3, Oshima Masaharu 1,4 |
| |
2 |
STM/STS observation of nanoscaled MnAs dots on
GaAs(001) |
Tokyo Tech.@Ueno Yuriko, Okabayashi Jun, Yoshino
Junji |
| |
3 |
Memory effect in semiconductor heterostructures
with ferromagnetic MnAs nanoparticles |
Univ. Tokyo 1, JST 2 @Pham Nam Hai 1, Masafumi
Yokoyama 1, Shinobu Ohya 12, Masaaki Tanaka 12 |
| |
4 |
Magneto-elastic coupling in GaMnAs studied by a
micromechanical cantilever |
NTT BRL@*Koji Onomitsu, Imran Mahboob, Hajime Okamoto,
Hiroshi Yamaguchi |
| ’ |
5 |
Annealing effect on magnetic properties of ferromagnetic
(InGaMn)As thin films |
The Univ. of Tokyo 1, JST 2@Yokoyama Masafumi 1,
Ohya Shinobu 1,2, Tanaka Masaaki 1 |
| ’ |
6 |
Electric field assisted annealing in (Ga,Mn)As
FET structures |
RIEC Tohoku UNIV. 1, ERATO JST 2, @* = Endo Masaki
1, Chiba Daichi 2,1, Matsukura Fumihiro 1,2, Ohno Hideo 1,2 |
| |
|
Break 10:30`10:45 |
|
| |
7 |
Dependence of ferromagnetic properties of Ge1-xCrxTe
on Te/Cr flux ratio |
Yamaguchi Univ. 1, Univ. of Alabama@*Asada Hironori1,
Yasuhiro Fukuma2, Moritake Naoki1, Irisa Takumi1, Koyanagi Tsuyoshi1 |
| |
8 |
Dependence of Cr distribution and ferromagnetism
of iodine-doped (Zn,Cr)Te on the MBE growth temperature |
Grad.School of Pure & Appl.Sci., Univ. Tsukuba
1,NIMS 2@*Koichiro Ishikawa 1,Nozomi Nishizawa 1,Shinji Kuroda 1,Hiroshi
Ikeda 1,Masanori Mitome 2,Bando Yoshio 2 |
| |
9 |
Inelastic tunneling spectroscopy in Fe/ZnSe/Ga1-xMnxAs
magnetic tunnel diodes |
AIST Nanoelectronics Res. Inst. 1, PRESTO 2@*Saito
Hidekazu 1 2, Yuasa Shinji 1, Ando Koji 1 |
| |
10 |
Curernt driven magnetization dyamics in GaMnAs-based
double barrier magnetic tunnel junctions |
Tokyo Tech.@Watanabe Maya, Okabayashi Jun, Yoshino
Junji |
| |
11 |
A change in magnetic anisotropy and ferromagnetic
resonance induced by optical excitation in (Ga,Mn)As |
ISEL Tokyo Inst. of Tech.@*Yusuke Hashimoto, Hiro
Munekata |
| |
12 |
Dependence of Mn concentration on time-resolved
magneto-optical signals of (Ga,Mn)As |
ISEL Tokyo Inst. of Tech.@*Kobayashi Satoi 1, Hashimoto
Yusuke 1, Munekata Hiro 1 |
| |
13 |
Electrical measurement on magnetic anisotropy and
its electric-field modification in ultra-thin (Ga,Mn)As |
ERATO JST 1, RIEC Tohoku Univ. 2@*Daichi Chiba
1,2, Fumihiro Matsukura 2,1, Hideo Ohno 2,1 |
| ’ |
14 |
Properties of (Ga,Mn)As FET structures with high
κ gate insulator |
RIEC Tohoku Univ. 1, ERATO JST 2@*Nishitani Yu
1, Chiba Daichi 2,1, Matsukura Fumihiro 1,2 and Ohno Hideo 1,2 |
| Joint Session
F: Physics and Applications of Carbon Nanotubes |
| September 5 9:00`18:50 |
| 5a-T-@/ I,II,III |
| |
1 |
TEM and Raman Spectroscopy of Graphene Sheets |
Hokkaido Univ. 1, Kotobuki Sangyo 2, SEP 3, Osaka
Pref. Univ. 4@Keiko Ukita 1, Munehiro Katsumata 1, *Hiroshi Tokumoto 1,
Hideo Kunioku 2, Hiroki Tokui 2, Kiyotaka Shimamura 3, Seiji Akita 4 |
| ’ |
2 |
Morphology control of carbon nanowalls employing
radical injection plasma enhanced CVD (II) |
Nagoya Univ. 1, KATAGIRI ENGINEERING Co., Ltd.
2, NU Eco-Engineering Co., Ltd. 3, Meijo Univ. 4@Maruyama Shigetoshi 1,
Yamakawa Koji 2, Kano Hiroyuki 3, Hiramatsu Mineo 4, Hori Masaru 1 |
| ’ |
3 |
Control of structures of CNWs by Oxygen gas addition. |
Nagoya Univ. 1, Aichi Inst.of Tech. 2, Meijo Univ.
3, NU Eco-Engineering4@*Takeuchi Wakana 1, Tokuda Yutaka 2, Hiramatsu Mineo
3, Kano Hiroyuki 4, Hori Masaru 1 |
| |
4 |
Effect of DC Substrate Vias on Deposition of Carbon
Nanowalls by Hot-Wire CVD III |
Gifu Univ 1,CIPS 2@Hatakeyama Yuichi 1, Simabukuro
Seiji 1,Tada Keiichiro 1,Hisanaga Masaru 1,Itoh Takashi 1,2,Nonomura Shuichi
1,2 |
| ’ |
5 |
Effect of substrate on growth of carbon nanowall |
Gifu Univ. 1, CIPS 2@*Shimabukuro Seiji 1,Yuichi
Hatakeyama 1,Hisanaga Masaru 1, Tada Keiichiro 1,Itoh Takashi 1,2,Nonomura
Shuichi 1,2 |
| |
|
Break 10:15`10:30 |
|
| ’ |
6 |
Field Emission from Carbon Nanowalls after Treatment
of Plasma Nitridation |
Nagoya Univ. 1,KATAGIRI ENGINEEERING Co.,LTD. 2,NU
Eco-Engineering Co.,LTD. 3,Meijo Univ. 4@*Obayashi Tomomi 1,Yamakawa Koji
2,Kano Hiroyuki 3,Hiramatsu Mineo 4,Hori Masaru 1 |
| ’ |
7 |
Supporting platinum nano-particles on carbon nanowalls
by using supercritical carbon dioxide and metal organic |
Nagoya Univ.1, Meijo Univ.2, KATAGIRI ENGINEERING3@*Machino
Takuma1, Yamakawa Koji3, Hiramatsu Mineo2, Hori Masaru1 |
| |
8 |
Analysis of Iron Nanoparticles Movement in Amorphous
Carbon Wall |
CREST-JST 1,Univ. of Tsukuba 2,NEC Nanoelectronics
Lab. 3,Univ. of Hyogo 4@*Higashi Koudai 1,2,Ichihashi Toshinari 1,3,Matsui
Shinji 1,4,Fujita Jun-ich 1,2 |
| |
9 |
Shear modulus of carbon nanocoil cantilever by
its resonant frequency |
Osaka Pref. Univ. 1,Osaka Univ. 2,CREST-JST 3,@*Shun
Sato 1,Pan Lujun 1,Yoshikazu Nakyama 2 3,Seiji Akita 1 3 |
| ’ |
10 |
Complex permittivity of Carbon nanocoil Composite |
Osaka Pref.Univ. 1,OSTEC 2,Tech. Res. Inst. of
Osaka Pref. 3,Nissin Electric 4,Osaka Univ. 5@*Ryota Tomokane 1,Yukihiro
Fujiyama 2,Kenichiro Tanaka 3,Seiji Akita 1,Yugo Higashi 4,Lujun Pan 1,Toshinori
Nosaka 3, Yoshikazu Nakayama1,5 |
| ’ |
11 |
Synthesis of multiwalled carbon nanocoils using
catalyst of Fe-Sn |
Osaka Pref. Univ. 1, Osaka Univ. 2, OSTEC 3@*Ryo
Kanada 1, Lujun Pan 1, Seiji Akita 1, Kaori Hirahara 2, Yoshikazu Nakayama
2, Nobuharu Okazaki 3 |
| |
|
Lunch 12:00`13:00 |
|
| 5p-T-@/ I,II,III |
| |
1 |
JJAP Young Scientist Award
Single-Walled Carbon Nanotube Thin-Film Sensor for Ultrasensitive Gas Detection |
Osaka University@*Winadda Wongwiriyapan |
| |
2 |
Development of Bio-Nano Sensor by Using CNT Compound
Materials III –Trial Manufacture of a DNA Tip- |
Musashi Inst. of Technol. 1,Saitama Small Enterprise
Promotion Corporation (REDS Group/JST) 2,Saitama Univ. 3,Tohoku Univ. 4@*Amiya
Shoji 1,Hirata Takamichi 1,Akiya Masahiro 1,Takei Osamu 2,Sakai Takafumi
3,Hatakeyama Rikizou 4 |
| |
3 |
Development of a Taste Sensor Based on a Carbon
Nanotube-Polymer Composite Material |
Grad. School of Eng., Musashi Institute of Technology
1,@*Takagi Keisuke 1,Hirata Takamichi 1,Akiya Masahiro 1, |
| |
4 |
Exploring Adsorption Kinetics on Single-Walled
Carbon Nanotubes |
Grad. Sch. Eng., Osaka Univ. 1, New Cosmos Electric
Co., Ltd. 2, Res. Center for UHVEM, Osaka Univ. 3@*Ishida Kazuhiro 1,Wongwiriyapan
Winadda 1,Yoshihara Kumiko 1,Inoue Satoshi 1,Ito Tatsuya 2,Shimazaki Ryotaro
2,Maekawa Toru 2,Suzuki Kengo 2,Ishikawa Hiroshi 2,Oura Kenjiro 3,Honda
Shin-ichi 1, Katayama Mitsuhiro 1 |
| |
5 |
Sensing of Carbon Monoxide Gas using Platinum Decorated
Single-Walled Carbon Nanotube |
Grad. Sch. Eng., Osaka Univ. 1, New Cosmos Electric
2, Res. Center for UHVEM, Osaka Univ. 3 @*Wongwiriyapan Winadda 1, Ohmori
Takafumi 1, Inoue Satoshi 1, Ito Tatsuya 2, Shimazaki Ryotaro 2, Maekawa
Toru 2, Suzuki Kengo 2, Ishikawa Hiroshi 2, Oura Kenjiro 3, Honda Shin-ichi
1, Katayama Mitsuhiro 1 |
| |
6 |
Detection of Amino Acid Based on Carbon Nanotube
Field-Effect Transistor Biosensors |
ISIR Osaka Univ. 1, CREST/JST 2@*Yamamoto Yasuki
1,2, Katsura Taiji 1,2, Maehashi Kenzo 1,2, Matsumoto Kazuhiko 1,2 |
| |
7 |
Influence of structure on sensitivity of CNT-FET
biosensor |
Olympus Corp. 1, NEDO 2, AIST 3, Osaka Univ. 4@*Masuhiro
Abe 1, 2, Katsuyuki Murata 1, 2, Tatsuaki Ataka 1, 2, Kazuhiko Matsumoto
2, 3, 4 |
| |
8 |
Dielectrophoretic Fabrication of Carbon Nanotube-Based
Hydrogen Gas Sensor Functionalized with Palladium |
Kyushu Univ. 1@Suehiro Junya 1, Yamane Shinji 1,
Imasaka Kiminobu 1 |
| |
9 |
Transport characteristics of CNTFET functionalized
with an optical sensitive protein |
Shizuoka Univ. 1, Res. Inst. of Biomolecule Metrology
Co., Ltd 2, Tokyo Weld Co., Ltd 3@*Hiroshi Koyama 1, Yukihiro Sugiyama 1,2,
Nnoritoshi Nakanishi 1,3, Masayuki Fujimoto 1 |
| |
10 |
Detection of biomolecules by microfluidic biochip
with carbon nanotube arrayed electrodes |
ISIR 1 & Eng. 2, Osaka Univ., NEDO 3, Mater. Sci.
JAIST 4 @Tsujita Yuichi 1, *Maehashi Kenzo 1,2, Matsumoto Kazuhiko 1,3,
Tamiya Eiichi 2,3, Torai Soichiro 4, Chikae Miyuki 4, Takamura Yuzuru 3,4 |
| |
|
Break 15:35`15:50 |
|
| |
11 |
Field emission energy-width dependence on CNT tip-radius |
Hitachi,Ltd. Materials Research Laboratory.1,Hokkaido
Univ.2@@Tadashi Fujieda1, Makoto Okai1, Hiroshi Tokumoto2 |
| |
12 |
Behaviors of a single CO2 molecule on
a pentagon at multiwalled carbon nanotube tip observed by field emission
microscopy |
Graduate School of Eng.,Mie Univ., 1@*Yoshiki Kishimoto
1,Koichi Hata 1 |
| |
13 |
Field Emission Properties of Single Walled Carbon
Nanotubes Synthesized from Ethanol |
The Univ. of Tokyo 1, DAINIPPON SCREEN MFG. 2@*Shiratori
Yosuke 1, Furuichi Koji 1,2, Noda Suguru 1, Tsuji Yoshiko 1, Sugime Hisashi
1, Zhang Zhengyi 1, Maruyama Shigeo 1, Yamaguchi Yukio 1 |
| |
14 |
Analysis of Thermonic-Field Electron Emission from
Well-Aligned Carbon Nanotubes |
Kyoto Inst. Technol. 1, Taiyoko Lab.Co.Ltd 2@*Omae
Atsuyoshi 1, Hayashi Yasuaki 1, Kitamura Kouzo 2, Tukumo Kiyohiko 2 |
| |
15 |
Emission profile of carbon nanotube electron source
with surface treatment using KrF laser |
CQST and Graduate School of Engineering Science,
Osaka Univ. 1@*Kinoshita Akira 1,Ohsumi Kazuya 1,Kim Won Seok 1,Murakami
Katsuhisa 1,Abo satoshi 1,Wakaya Fujio 1,Takai Mikio 1 |
| |
16 |
Improvement for Uniform Field Emission of Printed
Carbon-Nanotwist Field Emitter |
Toyohashi Univ. Technol. 1, Futaba Corporation
2, Tokai Carbon Co. 3, Toho Gas Co. 4@*Shinohara Yuichiro 1, Hosokawa Yuji
1, Shiki Hajime 1, Takikawa Hirofumi 1, Itoh Shigeo 2, Yamaura Tatsuo 2,
Yoshikawa Kazuo 3, Miura Kouji 3, Ina Takashi 4 |
| |
17 |
Preparation of patterned Polythiophene/SWCNT composite
by coupled AC electrophoresis and its Field emission properties |
Shinshu Univ.@1@*Kato Yoshiyuki 1,Sano Yuhei 1,Itoh
eiji 1,Miyairi Keiichi 1 |
| |
18 |
Electric conducting properties and field emission
properties of SWCNT/polyimide composite film |
Shinshu Univ. 1@*Tamura Shunsuke 1, Itoh Eiji 1,
Miyairi Keiichi 1 |
| |
19 |
Side Electron Emission Device (SEED) Using Carbon
Nanofiber/Elastomer Composite Sheets |
NAIST 1, Kobe Univ 2, Nisshin Kogyo Co. Ltd 3@*Nakamura
Hironao 1, Yanagi Hisao 1, Kita Takashi 2, Magario Akira 3, Noguchi Toru
3 |
| |
20 |
Side Electron Emission Device (SEED) Using Carbon
Nanofiber/Elastomer Composite Sheets (II) – Control of Electric Field
using Grid – |
Kobe Univ. 1, NAIST 2, Nisshin Kogyo 3@*Kawamura
Masashi 1, Kita Takashi 1, Wada Osamu 1, Yanagi Hisao 2, Magario Akira 3,
Noguchi Toru 3 |
| |
21 |
Selective growth of carbon nanotubes on a metal
tip |
Mie Univ. 1, Nagoya Univ. 2@*Sato Hideki 1, Ikesugi
Koichi 1, Hata Koichi 1, Kajiwara Kazuo 1, Saito Yahachi 2 |
| £ |
22 |
Effects of Ambient Gas on Electron Field Emission
from Carbon Nanotubes |
Kochi Univ. Technol.1@*Zou Qin1, Hatta Akimitsu1 |
| Joint Session
F: Physics and Applications of Carbon Nanotubes |
| September 6 9:00`18:30 |
| 6a-T-@/ I,II,III |
| |
1 |
Carbon nanotube via interconnects using Single
Damascene Process |
Mirai-Selete 1@*Hyakushima Takashi 1,Nozue Tatsuhiro
1,Norimatsu Masaaki 1,Mishima Miho 1, Murakami Tomo 1,Kondo Daiyu 1,Kawabata
Akio 1,Sato Shintaro 1,Nihei Mizuhisa 1,Awano Yuji 1 |
| ’ |
2 |
Non-volatile Memory using a Multi Wall Carbon Nanotube. |
NRI-AIST1, Nihon Univ.2, JST-PRESTO3@*H.Suga 1,2,
M.Horikawa1, T.Shimizu1, Y.Naitoh1,3 |
| ’ |
3 |
Detection of single-charge transition by single-walled
carbon nanotube single-hole transistor. |
Osaka Univ.1, CREST/JST 2, AIST 3 @*Kamimura Takafumi
1,2, Ohno Yasuhide 1,2, Matsumoto Kazuhiko1,2,3 |
| |
4 |
Formation of electrode metals with low and high
work functions to single-walled carbon nanotubes grown by chemical vapor
deposition |
Keio Univ. 1,Tokyo Inst. Tech. 2@*Hibino Norihito
1,Maki Hideyuki 1,Taniyama Tomoyasu 2, Sato Tetsuya 1 |
| |
5 |
Decrease in noise level of CNT-FETs by applying
AC voltage. |
ISIR, Osaka Univ. 1, CREST/JST 2@Yasuhide Ohno
1,2, Kenzo Maehashi 1,2, Koichi Inoue 1,2, Kazuhiko Matsumoto 1,2 |
| |
|
Break 10:15`10:30 |
|
| |
6 |
In-situ electronic characterization of carbon nanotube
FET annealed in vacuum |
Hokkaido Univ.,@*Mizuno Yusuke 1,Nakamura Motonori
2, Agus Subagyo 2,Hatakeyama Tomoyuki 1,Sueoka Kazuhisa 1 |
| |
7 |
Surface Potential Imaging of CNT-FET by Scanning
Kelvin Probe Microscopy |
Hokkaido Univ., Creative Research gSouseih1, Hokkaido
Univ., Sci. & Infom.,2@Hirotaka Hosoi 1, Yoshiki Yamada 1, Motonori Nakamura
1, Kazuhisa Sueoka 2, Koichi Mukasa 1 |
| |
8 |
Carbon Nanotube Transistors by Ink-jet Method |
Brother Ind.,Ltd. 1, Grad. Sch. Eng. Sci. Osaka
Univ. 2, IMR. Tohoku Univ. 3@*Miura Noriko 1, Asano Takeshi 1, Fukao Tomohiro
2, Shiraishi Masashi 2, Takenobu Taishi 3, Iwasa Yoshihiro 3 |
| |
9 |
Effect of Surface Chemical Modification for SWCNTs-FET
Properties |
Tohoku Univ. 1, Univ. of Tsukuba 2, Tokyo Gakugei
Univ. 3@*Kumashiro Ryotaro 1, Abe Yuki 1, Akasaka Takeshi 2, Maeda Yutaka
3, Kobayashi Nagao 1, Tanigaki Katsumi 1 |
| |
10 |
Electrical characterization of top-gated carbon
nanotube field-effect transistors in buffer solutions |
ISIR, Osaka Univ. 1, CREST/JST 2@Katsura Taiji
1,2, Yamamoto Yasuki 1,2, Inoue Kouichi 1,2, Matsumoto Kazuhiko 1,2 |
| £ |
11 |
Formation of p-n junction in double-walled carbon
nanotubes by heteroatoms / heteromolecules encapsulation |
Depart. of Elec. Eng., Tohoku Univ. 1@*Li Yongfeng
1, Hatakeyama Rikizo 1, Shishido Jun 1, Oohara Wataru 1, Kaneko Toshiro
1 |
| |
|
Lunch 12:00`13:00 |
|
| 6p-T-@/ I,II,III |
| |
1 |
Young Scientist Award for the Presentation of an
Excellent Paper
Band-Gap Tuning of an Individual Single-Walled Carbon Nanotube with Uniaxial
Strain |
Keio Univ. 1, RIKEN 2@Hideyuki Maki 1, Tetsuya
Sato 1, Koji Ishibashi 2 |
| ’ |
2 |
Catalyst activity of Fe and Co on SiO2 substrate
and SWNT growth mechanism |
Kyoto Inst. of Tech. 1, Wakayama Univ. 2@Murakami
Toshiya 1, Hasebe Yuki 1, Kisoda Kenji 2, Nishio Koji 1, Isshiki Toshiyuki
1, Harima Hiroshi 1 |
| ’ |
3 |
Vertically aligned single-walled carbon nanotube
synthesis by promoted pyrolysis of alcohol. |
DENSO Corp. 1,Univ.Tokyo 2@@*Shimazu Tomohiro 1,Suzuki
Yoshinobu 1,Oshima Hisayoshi 1,Maruyama Shigeo 2 |
| |
4 |
Matching between Reaction and Catalyst Conditions
in Growing Single-Walled Carbon Nanotubes by ACCVD |
Univ. Tokyo 1@*Sugime Hisashi 1, Noda Suguru 1,
Maruyama Shigeo 1, Yamaguchi Yukio 1 |
| |
5 |
Effect of catalyst diameter on the structure of
carbon nanotubes |
The Univ. of Tokyo 1@*Kakehi Kazunori 1, Noda Suguru
1, Maruyama Shigeo 1, Yamaguchi Yukio 1 |
| |
6 |
Dependence of carbon nanotube growth in high vacuum
on thickness of catalyst |
Meijo Univ. 1, Meijo Univ. 21st CENTURY COE program
gNano Factoryh 2@*Tanioku Kenji 1, Maruyama Takahiro 1,2, Naritsuka Shigeya
1,2 |
| ’ |
7 |
Synthesis of single-walled carbon nanotubes by
hot-filament CVD method with various alcohol sources |
Graduate School of Eng., Nagoya Univ. 1, Graduate
School of Eng. Sci., Osaka Univ. 2, EcoTopia Sci. Inst., Nagoya Univ. 3@*Oida
Satoshi 1, Sakai Akira 2, Nakatsuka Osamu 1, Ogawa Masaki 3, Zaima Shigeaki
1 |
| |
8 |
Synthesis and SEM observation of single-walled
carbon nanotube using Au-ferritin |
Tokyo Univ. of Science 1, Meiji Univ. 2, NTT Basic
Res. Labs. 3, JST-CREST 4@*Takagi Daisuke 1,4, Yamazaki Akira 2,3, Otsuka
Yasuyuki 2, Yoshimura Hideyuki 2, Kobayashi Yoshihiro 3,4, Homma Yoshikazu
1,4 |
| |
9 |
In-situ SEM of Observation of Single Walled Carbon
Nanotubes growth from Au catalysts |
Tokyo Univ. of Science 1,JST-CREST 2@*Tomohito
Chokan 1, Iwao Wako 1, Daisuke Takagi 1, Yoshikazu Homma 1,2 |
| |
10 |
Growth mechanism of aligned nanotubes studied with
13C isotopes |
Inst. Mater. Chem. Eng. Kyushu Univ. 1, Grad. Schl.
Eng. Sci. Kyushu Univ. 2, Grad. Schl. Eng. Kyushu Univ. 3 @*Ago Hiroki 1,2,
Ishigami Naoki 2, Yoshihara Naoki 2, Tsuji Tsuji 1,2, Ikuta Tatsuya 3, Takahashi
Koji 3 |
| ’ |
11 |
Characterization of horizontally-aligned SWNTs
on sapphire |
Grad. Schl. Eng. Sci. Kyushu Univ. 1, Inst. Mater.
Chem. Eng. Kyushu Univ. 2, AIST 3@*Naoki Ishigami 1, Hiroki Ago 1,2, Kenta
Imamoto 1, Masaharu Tsuji 1,2, Konstantin Iakoubovskii 3, Nobutsugu Minami
3 |
| |
|
Break 15:45`16:00 |
|
| |
12 |
In-situ Raman observation of CVD growth of single-walled
carbon nanotubes using Co-ferritin catalysts |
NTT BRL 1, Tokyo Univ. Sci. 2, Meiji univ. 3, CREST/JST
4@*Uchida Takashi 1,4, Tazawa Masaya 1,2, Yamazaki Akira 1,3, Kobayashi
Yoshihiro 1,4 |
| |
13 |
Effect of Al2O3 substrates
on carbon nanotube catalysts(II) |
Tokyo Univ. of Science@Ohno Hiroshi 1, Yamada Kazuki
1, Takagi Daisuke 1, Chiashi Shohei 1, Homma Yoshikazu 1 |
| |
14 |
Carbon nanotube synthesis using semiconductor nanoparticles |
Tokyo Univ. of Science 1, NTT Basic Res. Labs.
2, JST-CREST 3@*Takagi Daisuke 1,3, Hibino Hiroki 2, Suzuki Satoru 2,3,
Kobayashi Yoshihiro 2,3, Homma Yoshikazu 1,3 |
| |
15 |
Growth Window and Possible Mechanism of Millimeter-Thick
Single-Walled Carbon Nanotube Forests |
Tokyo Univ. 1@*Hasegawa Kei 1, Noda Suguru 1, Sugime
Hisashi 1, Kakehi Kazunori 1, Maruyama Shigeo 1, Yamaguchi Yukio 1 |
| |
16 |
Raman mapping characterization of SWCNTs films
synthesized by RHA-CVD |
Nikon Corp.@*Makiko Kikuchi 1, Yusuke Taki 1, Akira
Tanaka 1 |
| |
17 |
Ion-damage and radial-damage free CVD based on
atmospheric pressure non-thermal plasma: application to vertically-aligned
single-walled carbon nanotube synthesis |
Tokyo Tech. 1@Nozaki Tomohiro 1, Ohnishi Kuma 1,
Okazaki Ken 1 |
| |
18 |
Growth of carbon fine particles being suspended
in RF plasma and evaluation of their hydrogen storage properties |
Kyoto Inst. 1@*Imano Masayoshi,Hayashi Yasuaki |
| |
19 |
Local Synthesis of Single-Walled Carbon Nanotubes
by Laser-Assisted Chemical Vapor Deposition |
The Univ. of Tokyo 1, Hitachi Ltd. 2@*Keisuke Nagato
1, Keigo Kasuya 2, Yusuke Jin 2,Hirotoshi Kaito 1, Masayuki Nakao 1 |
| |
20 |
Single-wall carbon nanotubes synthesis using a
diesel soot carbon source |
Grad. Schol. Integra. Sci., Yokohama City Univ.
1@*Uchida Takashi 1, Tachibana Masaru 1, Kojima Kenichi 1 |
| |
21 |
Fabrication of periodic metal catalyst array using
nanosphere lithography |
Osaka Univ. ISIR 1, CREST/JST 2@Iwasaki Shin 1,2,
Ohno Yasuhide1,2, Maehashi Kenzou 1,2, Inoue Koichi 1,2 Matsumoto Kazuhiko
1,2 |
| Joint Session
F: Physics and Applications of Carbon Nanotubes |
| September 7 9:00`18:15 |
| 7a-T-@/ I,II,III |
| |
1 |
Observation of Density of States on Single-Walled
Carbon Nanotube tip - Emergence of van Hove Singularities - |
Grad. Sch. Eng., Osaka Univ. 1@*Kimura Takehiko
1, Wongwiriyapan Winadda 1, Murata Yuya 1, Inoue Satoshi 1, Matsumoto Takashi
1, Honda Shin-ichi 1, Katayama Mitsuhiro 1 |
| |
2 |
Analysis of Electronic Structure in Carbon Nanotubes
with Impurities |
Kobe Univ. 1@Maeda Takuma 1, Satofumi Souma 1,
Matsuto Ogawa 1 |
| |
3 |
First principles based study of electric conducting
properties of 3d transition metal filled single walled carbon nanotubes |
Department of Applied Physics, Osaka Univ. 1,Department
of Physics, Osaka Univ. 2,Physics Department, De La Salle Univ. 3@*Kasai
Koichiro 1, David Melanie 1, Md. Mahmudur Rahman 1, Diño Wilson Agerico
2,3, Kunikata Shinichi 1, Nakanishi Hiroshi 1, Kasai Hideaki 1 |
| |
4 |
Electronic Transport in a Suspended Multi-Wall
Carbon Nanotube Contacted with a Liquid Metal Electrode |
Nagoya Univ@Suzuki Yasunobu, Asaka Koji, Saito
Yahachi |
| |
5 |
Surface Potential Investigations on SWNTs Connected
to Nano-gap Electrodes |
Department of electronic science and engineering,
Kyoto Univ. 1,International Innovation Center, Kyoto Univ. 2, CREST/JST
3@*Miyato Yuji 1,Kobayashi Kei 2,Matsushige Kazumi 1,Yamada Hirofumi 1,3 |
| |
|
Break 10:15`10:30 |
|
| |
6 |
In-situ observation of current induced graphitization
of amorphous carbon rod contained gallium |
NEC Nano-Electronics Labs. 1, Nanofactory inst.
AB 2, Univ. of Tsukuba 3, Univ. of Hyogo 4, CREST-JST 5@*Ichihashi Toshinari
1,5, Oleg Lourie 2, Fujita Jun-ichi 3,5, Nakamatsu Kenichiro 4,5, Kometani
Reo 4,5, Matsui Shinji 4,5 |
| |
7 |
Nanometer-sized carbon wires prepared by carbon
nanotubes |
Nagoya Univ.@*Koji Asaka,Kensuke Okumura,Hitoshi
Nakahara, Yahachi Saito |
| |
8 |
Oxidation control of Carbon nanotube with lanthanum
compound |
Tsukuba Univ. 1, Osaka Univ. 2, OLYMPUS 3, AIST
4, CREST/JST 5@*Masatoshi Maeda 1,5,Takafumi Kamimura 2,5, Katsuyuki Murata
3,5, Kazuhiko Matsumoto 2,4,5 |
| ’ |
9 |
Effects of Neutral Beam Irradiation for Carbon
Nanotubes (4) |
Tohoku Univ. Inst. Fluid Sci. 1, Tohoku Univ. Grad.
School Environmental Studies 2, NEC 3@*Wada Akira 1, Sato Yoshinori 2, Ishida
Masahiko 3, Nihey Fumiyuki 3, Tohji Kazuyuki 2, Samukawa Seiji 1 |
| |
10 |
Threshold energy for creating low-energy irradiation-induced
defects in SWNTs |
NTT Basic Research Labs. 1@*Satoru Suzuki 1, Yoshihiro
Kobayashi 1 |
| ’ |
11 |
Defect Detection in Carbon Nanotubes by Electrostatic
Force Microscopy |
Nagoya Univ. 1, VBL Nagoya Univ. 2@*Yuki Okigawa
1, Takeo Umesaka 1, Yutaka Ohno 1, Shigeru Kishimoto 1,2, Takashi Mizutani
1 |
| |
|
Lunch 12:00`13:00 |
|
| 7p-T-@/ I,II,III |
| |
1 |
Efficient growth of double-walled carbon nanotubes
using MgO and Fe/Co/Mo catalyst |
Kyoto Inst. of Tech. 1, Wakayama Univ. 2@*Ryoji
Naito 1, Toshiya Murakami 1, Yuki Hasebe 1,Kenji Kisoda 2, Koji Nishio 1,
Toshiyuki Isshiki 1, Hiroshi Harima 1 |
| |
2 |
Influence of residual acetylene gas on growth of
brush shape carbon nanotubes |
Osaka Prefecture Univ. 1,Osaka Univ. 2@*Yamaguchi
Masao 1,Pan Lujun 1,Akita Seiji 1,Nakayama Yoshikazu 2 |
| |
3 |
Relationship between growth condition and catalyst
activity for low-temperature carbon nanotube growth |
MIRAI-Selete@*Tatsuhiro Nozue, Shintaro Sato, Akio
Kawabata, Daiyu Kondo, Tomo Murakami, Mizuhisa Nihei, Yuji Awano |
| |
4 |
Control of Fe catalyst particle size and growth
of carbon nanotube by gas-phase CVD |
Grad. Schl. of Electron. Sci. and Technol., Shizuoka
Univ. 1, Res. Inst. of Electron., Shizuoka Univ. 2, Dept. of Electrical
and Electronic Eng., Shizuoka Univ. 3@*Ohara Kenji 1, Neo Yoichiro 2, Mimura
Hidenori 2, Inoue Yoku 3, Ishida Akihiro 3 |
| |
5 |
Increasing the density of Carbon Nanotubes |
Tsukuba ISM, ULVAC Inc. @*Nakano haruhisa 1, Murakami
Hirohiko 1 |
| |
6 |
The effect of water on the growth process of carbon
nanotubes |
Laboratory for Nanoelectronics and Spintronics,
RIEC, Tohoku Univ. 1, Fujitsu Laboratories Ltd. 2@Yasuo Kimura 1, Takeru
Numasawa 1, Mizuhisa Nihei 2, Michio Niwano 1 |
| |
7 |
Growth of ultra long multi-walled carbon nanotube
by thermal chemical vapor deposition |
Shizuoka Univ. 1,2@*Kakihata Kazuyuki 1, Yusaku
Hirono 1, Horie Toshinori 1, Inoue Yoku 1, Ishida Akihiro 1, Mimura Hidenori
2 |
| |
8 |
Coating growth of carbon nanotube |
Shizuoka Univ. 1,Shizuoka Univ.2@*Inoue Yoku 1,Kakihata
Kazuyuki 1,Hirono Yusaku 1,Horie Toshinori 1,Ishida Akihiro 1,Mimura Hidenori
2 |
| |
9 |
Flush discharge induced solid phase reaction of
graphitic tube formation in FIB-CVD pillars |
CREST-JST 1,@Univ. of Tsukuba 2, NEC 3, SIINT 4,
Univ. of Hyogo 5@Nakazawa Shotaro 1,2, Ishida Masahiko 1,3, Ichihashi Toshinari
1,3, kaito Takashi 4, Matsui Shinji 1,5, Fujita Jun-ichi 1,2 |
| |
10 |
Study of Carbon Transmitting Method for growth
of Carbon Nanotubes |
Sumitomo Electric Ind. Ltd. 1, Technol. Research
Inst. of Osaka Prefecture 2, Kyoto Univ. 3@*Takeshi Hikata 1, Kazuhiko Hayashi
1, Tomoyuki Mizukoshi 2, Yoshiaki Sakurai 2, Itsuo Ishigami 2, Takaaki Aoki
3, Toshio Seki 3, Jiro Matsuo 3 |
| |
|
Break 15:30`15:45 |
|
| ’ |
11 |
Environmental Transmission Electron Microscopy
Study of Growth Dynamics of Carbon Nanotubes |
Osaka Univ. 1, CREST-JST 2@*Hideto Yoshida 1,2,
Tetsuya Uchiyama 1,2, Yusuke Tanemoto 1,2, Seiji Takeda 1,2 |
| |
12 |
Growth Rate of Carbon Nanotubes Measured by In
Situ Environmental Transmission Electron Microscopy |
Osaka Univ. 1, CREST-JST 2@*Yusuke Tanemoto 1,2,
Hideto Yoshida 1,2, Tetsuya Uchiyama 1,2, Hideo Kohno 1,2, Seiji Takeda
1,2 |
| ’ |
13 |
Synthesis of carbon nanotubes from Ni catalysts
implanted by focused ion beamiIIj |
Waseda Univ.@*Morikane Ryota, Iwasaki Takayuki,
Koide Takashi, Mejima Soichi, Nakayama Hideki, Shinada Takahiro, Ohdomari
Iwao, Kawarada Hiroshi |
| |
14 |
Synthesis and characterization of ferromagnetic
metal-filled carbon nanotube |
Nagoya Inst of Tech. 1, Tohoku University 2, Kyushu
University 3@Y. Hayashi 1 , T. Fujita 2, T. Tokunaga 3, T. Naitou 1, M.
Tanemura 1 |
| £ |
15 |
Regrowth of Carbon Nanotubes Array by Microwave
Plasma Enhanced Thermal Chemical Vapor Deposition |
Nano High-Tech Res. Center, Toyota Tech. Inst.
1.@*Chiu Chien-Chao 1, Yoshimura Masamichi 1, Ueda Kazuyuki 1 |
| ’ |
16 |
Synthesis and the observation of a carbon material
by an alcohol thermal cracking |
College of Science and Technology Nihon Univ 1,2@*Namiki
Kazuhiro 1,Suzuki Kaoru 2 |
| |
17 |
Growth of Carbon Nanotube and Diamond Composites
by Hot-Filament Chemical Vapor Deposition |
Yokohama National Univ 1,CREST/JST 2@*Chiba Hidejiro
1,Suzuki Kentaro 1,Oya Takahide 1,Ogino Toshio 1 2 |
| |
18 |
Formation of distinctive structures on Si substrates
by utilizing ferroin solution and its application to CNT network growth |
Yokohama National Univ. 1@*Oya Takahide 1, Ogino
Toshio 1 |
| ’ |
19 |
Carbon-nano structure by thermal decomposition
using SiC thin film |
RIE Shizuoka Univ. 1,@*Ogawa Yasuhiro 1,Hashimoto
Yoshitaka 1,Nakamura Atushi 1,Tanaka Akira 1,Temmyo Jiro 1, |
| |
20 |
Surface oxidation and Carbon nanocap formation
of 6H-SiC (000-1) under Oxygen atmosphere |
Dept. of Materials Science&Engineering Meijo Univ.
1,Meijo Univ. "Nano Factory" 2,Japan Fine Ceramics Center 3@*Fujita Naomi
1,Tanioku Kenji 1,Maruyama Takahiro 1,2,Narituka Shigeya 1,2, Kusunoki Michiko
3 |
| Joint Session
F: Physics and Applications of Carbon Nanotubes |
| September 8 9:00`15:00 |
| 8a-T-@/ I,II,III |
| |
1 |
Development of Field Effect Chromatography for
Separation of Metallic and Semiconducting Carbon Nanotubes |
Yamagata Univ. 1@*Sano Masahito 1, Wada Keisuke
1 |
| |
2 |
Patterning of carboxyl group on Carbon Nanotube
by electron beam irradiation |
Yokohama National Univ. 1,CREST/JST 2@*Sasaki Kohsuke
1,Ogino Toshio 2 |
| |
3 |
Polymerization of fullerene in solution with free
electron laser irradiation |
CST, Nihon Univ.@*Iwata Nobuyuki 1, Iio Yasunari
1, Ando Shingo 1, Nokariya Ryo 1, Yamamoto Hiroshi 1 |
| |
4 |
SiO2 buried CNT for the application to optical
waveguide devices |
Waseda Univ. 1@*Akihiro Arakaki 1, Ryouta Ishii
1, Katuyuki Utaka 1 |
| |
5 |
Fabrication of MWCNT ultrathin film using liquid-liquid
interface |
IMRAM Tohoku Univ. 1, PREST-JST 2@*Jun Matsui 1,2,
Kohei Yamamoto 1, Nobuhiro Inokuma 1, Hironori Orikasa 1, Takashi Kyotani
1, Tokuji Miyashita 1 |
| |
|
Break 10:15`10:30 |
|
| ’ |
6 |
Intrinsic optical transition energies of single-walled
carbon nanotubes at room temperature |
Tokyo Univ. of Science 1, JST-CREST 2@*Chiashi
Shohei 1, Hanashima Tateki 1, Homma Yoshikazu 1,2 |
| ’ |
7 |
Simultaneous Spectroscopy of Photoluminescence
and Photocurrent of Individual Carbon Nanotubes in Field-Effect Transistor |
Dept. of Quantum Eng., Nagoya Univ.@*Atsushi Kobayashi,
Yutaka Ohno, Shigeru Kishimoto, and Takashi Mizutani |
| |
8 |
Time-resolved photoluminescence of single-walled
carbon nanotubes bridging over trenches – environmental effect |
Nagoya Univ. 1, PRESTO/JST 2@*Yutaka Ohno 1 2,
Shigeru Kishimoto 1, Takashi Mizutani 1 |
| ’ |
9 |
Observation of photoluminescence from freestanding
individual single-walled carbon nanotubes |
Department of Electronic Engineering, Tohoku Univ.
1@*Toshiaki Kato 1, Rikizo Hatakeyama 1 |
| |
10 |
Multi-wavelength Raman spectroscopy and imaging
of single wall carbon nanotubes through resonance Raman effect |
Graduate School of Engineering 1, Graduate School
of Frontier Biosciences 2, Osaka Univ., RIKEN 3@@*Kazumasa Uetsuki 1, Hiroyuki
Morita 1, Taka-aki Yano 1, Taro Ichimura 1, Yuika Saito 1, Prabhat Verma
2, Yasushi Inouye 2, Satoshi Kawata 1,3 |
| |
11 |
Characteristic of Ionic Liquid Irradiated Single-Walled
Carbon Nanotubes |
Tohoku Univ. 1, CREST/JST 2@Kaneko Toshiro 1,2,
Hirotsu Yuu 1, Uchida Keisuke 1, Baba Kazuhiko 1, Li Yongfeng 1, Hatakeyama
Rikizo 1 |
| |
|
Lunch 12:00`13:00 |
|
| 8p-T-@/ I,II,III |
| |
1 |
Evaluation of mechanical characteristics of carbon
nanotubes by nanoprobe manipulation in TEM |
Tokai Univ. 1, Nagoya Univ. 2, IIS The Univ. of
Tokyo 3@*Kuzumaki Toru 1,3, Ohtake Naoto 2, Mitsuda Yoshitaka 3 |
| |
2 |
Characterization of mechanical properties of a
suspended carbon nanotube |
Yokohama National Univ. 1,CREST/JST 2@*Ono Yuki
1,Oya Takahide 1,Ogino Toshio1,2 |
| |
3 |
Mapping of Local Contact Load Dependence of SWNT
Current using Point-contact AFM |
Department of electronic science and engineering,
Kyoto Univ. 1,International Innovation Center, Kyoto Univ. 2, CREST/JST
3@*Miyato Yuji 1, Nishio Taichi 1, Kobayashi Kei 2, Matsushige Kazumi 1,
Yamada Hirofumi 1,3 |
| |
4 |
Optical measurement of Mechanical Vibration of
Cantilevered Carbon Nanotubes in Air |
Osaka Prefe. Univ. 1, CREST-JST 2@*Seiji Akita
1,2 |
| |
5 |
Atomic Level Analysis of Pure Graphite and Carbon
Nanotubes by Scanning Atom Probe |
Kanazawa Inst. Tech. 1, Nagoya Univ. 2@*Nishikawa
Osamu 1, Taniguchi Masahiro 1, Saito Yahachi 2 |
| £ |
6 |
Fabrication of Carbon Nanotube STM Tips by Liquid
Catalyst-Assisted Microwave Plasma-Enhanced Chemical Vapor Deposition |
Nano High-Tech Research Center, Toyota Technological
Institute@Fa-Kuei TUNG, Masamichi YOSHIMURA and Kazuyuki UEDA |
| |
7 |
Direct Growth of Single Carbon Nanocomposite Fibers
onto SPM Cantilever Tips by Ion Irradiation |
Nagoya Inst. Technol 1, Olympus Co. Ltd. 2@*Sugita
Yoshitaka 1, Kitazawa Masashi 1,2, Tanemura Masaki 1, Hayashi Yasuhiko 1,
Ota Ryou 2 |
| |
8 |
Fabrication of Carbon-Nanotube / Metal-Particle
Structures by Atomic Force Microscope Manipulation (2) |
Yokohama National Univ. 1, CREST/JST 2@*Yuta Kashiwase
1, Takayuki Ikeda 1, Takahide Oya 1, Ogino Toshio 1,2 |
| Joint Session
G: Fundamentals and Applications of Quantum Information Technology |
| September 7 13:00`16:30 |
| 7p-N-@/ I,III |
| |
1 |
Quantum interface between an ion ensemble and a
photon |
NICT 1, JST-CRST 2@*Hayasaka Kazuhiro 1,2 |
| |
2 |
Photon-counting Raman Spectroscopy for temperature
diagnostics of an optical fiber cooled in a cryostat |
NTT Basic Research Labs.@*Hashimoto Daisuke 1,Shimizu
Kaoru 1 |
| |
3 |
LD light Antisqueezing Using Fiber Interferometer |
Hitachi ARL@Tomaru Tatsuya |
| |
4 |
Time-Domain Homodyne Measurement With a repetition
rate of 80 MHz |
Nihon Univ. 1, Waseda Univ. 2@*Adachi Shunsuke
1, Namekata Naoto 1, Takahasi Yuta 1,2, Machida Susumu 1, Inoue Shuichiro
1 |
| |
5 |
Development of the frequency conversion system
of quantum correlation in the intensity (I) |
NICT 1@*Kasai Katsuyuki 1 |
| |
6 |
Study of single-photon detector using the wavelength
up-conversion in Type-II PPLN waveguide |
Nihon Univ. 1, NIMS 2@*Obinata Masashi 1, Namekata
Naoto 1, Kurimura Sunao 2, Inoue Shuichiro 1 |
| |
7 |
Long-distance distribution of time-bin entangled
photon pairs over 100 km |
NTT Basic Res. Labs. 1, NTT Photonics Labs. 2,
Osaka Univ. 3, JST-CREST 4@Toshimori Honjo 14, Takesue Hiroki 14, Kamada
Hidehiko 1, Nishida Yoshiki 2, Tadanaga Osamu 2, Asobe Masaki 2, Inoue Kyo
134 |
| |
|
Break 14:45`15:00 |
|
| |
8 |
Capacity Limit of Multi-Channel Quantum Entanglement
Distribution Network |
Frontier Sciences, Univ. Tokyo@*Lim Han Chuen 1,
Kikuchi Kazuro 1 |
| |
9 |
200-km quantum key distribution using superconducting
single photon detectors |
NTT Basic Research Laboratories 1, NIST 2, Stanford
University 3@Hiroki Takesue 1, Sae Woo Nam 2, Qiang Zhang 3, Robert H. Hadfield
2, Toshimori Honjo 1, Kiyoshi Tamaki 1, Yoshihisa Yamamoto 3 |
| |
10 |
Quantum key distribution using 500MHz sinusoidally
gated InGaAs/InP APDs |
Nihon Univ. 1, NTT Basic Research Labs. 2, JST-CREST
3.@ Namekata Naoto 1,Fujii Go 1, Honjo Toshimori 2,3, Takesue Hiroki2,3,
Inoue Shuichiro 1. |
| |
11 |
Differential-phase-shift quantum key distribution
using decoy pulses with high intensity |
Osaka Univ. 1, JST-CREST 2@*Noguchi Yuita 1,2,
Hayashi Shusaku Hayashi 1,2, Inoue Kyo 1,2 |
| |
12 |
Point-to-Multipoint Differential-Phase-Shift Quantum
Key Distribution |
Osaka Univ. 1,NTT Basic Res. Labs 2,JST-CREST 3@*Ohasi
Tetsuya 1 3,Tamao Keizi 1 3,Inoue Kyo 1 2 3 |
| |
13 |
Error correction and privacy amplification in differential-phase-shift
quantum secret sharing |
Osaka Univ. 1,NTT Basic Res. Labs 2,JST-CREST 3@*Hayashi
Shusaku 1 3,Watanabe kazuhiro 1 3,Inoue Kyo 1 2 3 |
| Joint
Session K: Zinc Oxide and Related Functional Materials |
| September 5 |
| 5a-ZS-@/ I,II |
| |
|
Short
Presentation (5min.) 9:00`11:30
5a-ZS-1`27@Poster Session 13:00`15:00 |
| |
1 |
Epitaxial relationship between sapphire a-, c-,
and r-face and ZnO films |
AIST Chubu 1@*Kusumori Takeshi 1 |
| |
2 |
Issues on ZnO grain boundaries and electron mobility |
NIMS@N. Ohashi, I. Sakaguchi, H. Ryoken, Y.-G.
Wang, S. Hishita, T. Ohgaki, and H. Haneda |
| |
3 |
Investigation of composition limit of ZnO related
alloys using ab-initio calculations |
Wakayama Univ.@Investigation of composition limit
of ZnO related alloys using ab-initio calculations |
| |
4 |
Hard X-ray Photoemission Spectroscopy in ZnO-Difference
in Valence Band Spectra between Zn- and O- polar surfaces. |
SPring-8/NIMS 1, SPring-8/JASRI 2, Kouchi Technical
Univ. 3, Tohoku Univ. 4@Kobayashi Keisuke 1, J. J. Kim 2, Yamamoto Tetsuya
3, Ueda Shigenori 2, Yoshikawa Hideki 1, Nomoto Daisuke 1, Ikenaga Eiji
2, Yao Takafumi 4, Y,Takeda 5,Y.Saitou5 ,K. Shimada 6, H. Namatame 6 |
| |
5 |
Dynamical and optical properties of ZnO including
fresh dislocations |
IMR, Tohoku Univ.@*Y Ohno 1,H Koizumi 1,T Taishi
1,K Fujii 1,H Goto 1,T Yao 1,I Yonenaga 1 |
| |
6 |
Electrodeposition of zinc oxide thin films modified
with rare-earth metal complexes for luminescent devices |
Gifu Univ.,1 Nara Inst. Sci. Technol.2@Kazuho Mizuta1.
Hiroyuki Iwai1. Tsukasa Yoshida1. Aishi Yamamoto2. Hisao Yanagi2 |
| |
7 |
Effect of Internal Current on the ZnO Ceramics
Sintering by the PCS Method. |
Faculty of Science and Engineering, Saga Univ.
1, Industrial Technology Center of Saga 2.@*Tatsuya Misawa1, Noboru Shikatani
1, Yuji Kawakami2, Takashi Enjoji2,Yasunori Ohtsu1, Hiroharu Fujita1 |
| |
8 |
Improvement in Conductivity of Sputtered Al-doped
ZnO Thin Films by the Assist of Inductively-Coupled Plasma |
Fac. of Eng.1, School of Sci. & Technol.2, Nagasaki
Univ.@Yoshinobu Matsuda 1, Takashi Shibasaki 2, Shiro Iwai 2, Masanori Shinohara
1 |
| £ |
9 |
Low Resistivity and Transparent Al-Doped ZnO Films
Prepared by Radio Frequency Magnetron Sputtering |
Kochi Univ. of Tech.1,Kochi IPC 2, Kochi Casio
Co. Ltd. 3@*Li Chaoyang 1,2,Hiramatsu Takahiro 2,3, Matsuda Tokiyoshi 1,2,
Furuta Hiroshi 1,2, Furuta Mamoru 1,2, Hirao Takashi 1,2 |
| |
10 |
Influence of substrate temperature on preparation
of low resistivity Ga-doped ZnO films by reactive plasma deposition |
Research Inst., Kochi Univ. of Tech.1@*Takahiro
Yamada1, Aki Miyake1, Hisao Makino1, Seiichi Kishimoto1, Naoki Yamamoto1,
Tetsuya Yamamoto1 |
| |
11 |
Mechanical Constant in Low Resistivity Ga-Doped
ZnO Thin Film Prepared by Reactive Plasma Deposition |
Research inst., Kochi Univ. of Tech.1, Kochi National
College of Tech.2@*Naoki Yamamoto1, Takahiro Yamamda1, Aki Miyake1, Hisao
Makino1, Seiichi Kishimoto2, Tetsuya Yamamoto1 |
| ’ |
12 |
Growth of Ga-doped ZnO thin films on Cyclo Olefin
Polymer film substrate by reactive plasma deposition |
Research Inst., Kochi Univ. of Tech.@*Aki Miyake
1, Takahiro Yamada 1, Hisao Makino 1, Naoki Yamamoto 1, Tetsuya Yamamoto
1 |
| |
13 |
TEM analysis of Ga-doped ZnO films |
Kochi Univ. of Tech. Dept. of Environmental Systems
Eng. 1Kochi Univ. Of Tech. 2@Nitta Noriko 1, Tanimoto Hayato 1, *Taniwaki
Masafumi 1,Yamamoto Naoki 2, Makino Hisao 2, Yamada Takahiro 2, Miyake Aki,
Yamamoto Tetsuya2 |
| |
|
Break 10:05`10:20 |
|
| |
14 |
Transparent conducting AZO thin films deposited
using impurity-doped ZnO sintered by millimeter-wave heating |
Kanazawa I.T. OEDS R&D Center1, Fuji Dempa Kogyo
Co. Ltd.2@*Okada Kenji1, Abe Hiraku2, Miyata Toshihiro1, Minami Tadatsugu1 |
| |
15 |
Relationship between substrate positions and obtained
properties of GZO thin films prepared by vacuum arc plasma evaporation |
Kanazawa I.T. OEDS R&D Center@*Honma Yasunori1,
Miyata Toshihiro1, Minami Tadatsugu1 |
| |
16 |
Relationship between properties of targets used
and properties obtained in dc-magnetron-sputtered AZO transparent conducting
films |
OEDS R&D Center, Kanazawa I.T.@*Takeshi Kuboi 1,Toshihiro
Miyata 1,Tadatsugu Minami 1 |
| |
17 |
Improvement of resistivity stability in impurity-doped
ZnO thin films when used in high-humidity environments |
OEDS R&D Center, Kanazawa I.T.@*Takeshi Kuboi 1,Yasunori
Honma 1,Kenji Okada 1,Toshihiro Miyata 1,Tadatsugu Minami 1 |
| ’ |
18 |
Laminating transparent conducting ITO/AZO films
aimed at nursing Indium ingredient |
Osaka Sangyo Univ. 1,Okuda Technical Office 2@*Higashimura
Yoshinori 1,Aoki Takanori 1,Suzuki Akio 1,Matsushita Tatsuhiko 1,Okuda Masahiro
2 |
| ’ |
19 |
Ultra thin transparent conducting oxide films fabricated
by PLD method |
Osaka Sangyo Univ. 1,Okuda Technical Office 2@*Nakamura
Masataka 1,Aoki Takanori 1,Suzuki Akio 1,Matsushita Tatsuhiko 1,Okuda Masahiro
2 |
| ’ |
20 |
Transparent conducting GZO/buffer layer films prepared
on organic substrate by PLD method |
Osaka Sangyo Univ. 1,Okuda Technical Office 2@*Uehara
Kenji 1,Muronaka Syouta 1,Aoki Takanori 1,Suzuki Akio 1,Matsushita Tatsuhiko
1,Okuda Masahiro 2 |
| ’ |
21 |
Transparent conducting zinc oxide films deposited
on COP substrate by PLD method |
Osaka Sangyo Univ. 1,Okuda Technical Offic 2@*Nakamura
Atsuhiro 1,Michihata Ryota 1,Aoki Takanori 1,Suzuki Akio 1,Matsushita Tatsuhiko
1,Okuda Masahiro 2 |
| ’ |
22 |
Transparent conducting zinc oxide films with characteristics
improved by seeding anneal |
Osaka Sangyo Univ. 1,Okuda Technical Office 2@*Murakami
Shinitirou 1,Aoki Takanori 1,Suzuki Akio 1,Matsushita Tatsuhiko 1,Okuda
Masahiro 2 |
| ’ |
23 |
Work function controlled transparent conductive
films with zinc oxide system by PLD method (II) |
Osaka Sangyo Univ. 1, Okuda Technical Office 2@*Yoshida
Kazuo 1, Aoki Takanori 1, Suzuki Akio 1, Matsushita Tatsuhiko 1, Okuda Masahiro
2 |
| ’ |
24 |
Characteristics of metal thin films fabricated
by PLD on transparent conducting films with zinc oxide system prepared by
PLD |
Osaka Sangyo Univ. 1,Okuda Technical Office 2@*Otsuki
Hiroyuki 1,Aoki Takanori 1,Suzuki Akio 1,Matsushita Tatsuhiko 1,Okuda Msahiro
2 |
| |
25 |
Characterization of Indium Doped Zinc Oxide (ZnO)
Films Prepared CVD Method |
Tokyo Metropolitan Univ. 1@*Morita Kaname 1, Sato
Yuichi 1, Sugawara Hiroharu 1 |
| |
26 |
Scattering mechanism of In-doped ZnO thin film
grown by spray pyrolysis method |
Miyazaki Univ. 1, Okayama Univ. Sci. 2,@Oyama Satoshi
1, Kato Masahiro 1, Oshima Minoru 1, Yoshino Kenji 1, Ikari Tetuo 1, Yoneta
Minoru 2, |
| ’ |
27 |
Control of ZnO thin film' surface morphology and
conductive property by Indium doping. |
Res.Inst.shizuoka Univ. 1,Graduate School of Sci.and
Tec.,Shizuoka Univ. 2,Graduate School of Electronics Sci.and Tec.,Shizuoka
Univ. 3@*Tsuboi Takako 1,Ohashi Toshiya 1,Kenji Yamamoto 2,Sandip Gangil
3,Atsushi Nakamura 1,Jiro Temmyo 1,2,3. |
| Joint Session
K: Zinc Oxide and Related Functional Materials |
| September 6 |
| 6a-ZL-@/ I,II |
| |
|
Short
Presentation (5min.) 9:00`11:10
6a-ZL-1`23@Poster Session 13:00`15:00 |
| |
1 |
Effect of nitrogen doping on photoluminescence
properties of homoepitaxial ZnO:N thin films |
Iwate Univ. 1, Iwate Industrial Research Institute
2, Center for Regional Collabo. Iwate Univ. 3, Sendai Nat. College of Tech.
4 @*Nakagawa Akira 1, Shibano Kohei 1, Endo Haruyuki 2, Meguro Kazuyuki
2, Nakagawa Michiko 3, Chiba Shigeki 1, Kashiwaba Yasuhiro 4, Ojima Tsutomu
1, Aota Katsumi 1, Niikura Ikuo 3, Kashiwaba Yasube 3, Fujiwara Tamiya 1 |
| |
2 |
Preparation of non-polar ZnO films by plasma-assisted
reactive evaporation method |
Iwate Univ. 1, Iwate Industrial Research Inst.
2,Center for Regional Collabo. Iwate Univ. 3, Sendai Nat. College of Tech.
4@*Abe Takami 1, Nakagawa Akira 1, Nakagawa Michiko 3, Endo haruyuki 2,
Meguro Kazuyuki 2, Kashiwaba Yasuhiro 4, Daibo Masahiro 1, Niikura Ikuo
3, Kashiwaba Yasube 3 |
| ’ |
3 |
Incorporation kinetics of nitrogen atoms into ZnO
films |
Tohoku Univ.,IMR 1, Tohoku Univ.,CIR 2@*Park Seunghwan
1, Minegishi Tsutomu 1, Park Jinsub 1, Im Inho 1, Hanada Takashi 1, Cho
Meounghwan 1,2, Yao Takafumi 1,2 |
| £ |
4 |
X-ray photoelectron spectroscopy (XPS) modes of
p-type In-N co-doped ZnO thin films on R-plane sapphire grown by remote-plasma-enhanced
metalorganic chemical vapor deposition |
Graduate School of Electronic Science and Technology,
Shizuoka Univ. 1, Research Inst. of Electronics, Shizuoka Univ. 2@Gangil
Sandip 1, Tsuboi Takako 2, Nakamura Atsushi 2,Shimomura Masaru 2, Temmyo
Jiro 1,2 |
| |
5 |
Molecular beam epitaxial growth and photoluminescence
characterization of nitrogen-doped ZnO films |
Osaka Inst. of Tech., Nanomaterials Microdevices
Res. Center@Kawasaki Motoki 1, Hashimoto Takahito 1, Koike Kazuto 1, Ogata
Ken-ichi 1, Sasa Shigehiko 1, Inoue Masataka 1, Yano Mitsuaki 1 |
| |
6 |
High electrical resistive property of Cu doped
ZnO |
TUS@*Tokunaga Takahiro 1, Ogasawara Naoto 1, Yokosawa
Ryouji 1, Furukawa Akio 1 |
| |
7 |
Analysis of local structure around Mn atoms in
pseudomorphic ZnO:Mn/ZnO epitaxial films II |
Grad. school of Eng., Nagoya Univ. 1,VBL, Nagoya
Univ. 2@Oda Yasufumi 1, Tabuchi Masao 2, Takeda Yoshikazu 1 |
| |
8 |
(Zn,Cr)O Micro Composites Grown by Using the Catalytic
Electric Current Heating Method |
Nagaoka Univ.,@*Keiichi Shimoda 1, Takanari Yasui
1, Yuichiro Kuroki 1, Masasuke Takata 1 |
| |
9 |
Growth and Characterization of ZnO:Cr grown on
Al2O3 by MBE method |
Okayama Univ. of sciencce 1,Miyazaki Univ. 2@*Sato
Yuichi 1, Shhintani Motoyuki 1, Yonita Minoru 1, Yoshino Kennji 2, Ohishi
Masakazu 1, Saito Hiroshi 1 |
| |
10 |
Ferromagnetic Mn state in Mn-Zn-O system |
Saga Univ. 1, Kyushu Univ. 2@*Ishiwata Yoichi 1,
Yamada Yusuke 1, Tanaka Yuki 1, Zheng Xu-Guang 1, Kawae Tatsuya 2 |
| |
|
Break 9:50`10:05 |
|
| |
11 |
Growth and characterization of ZnO1-xSx
films grown by Molecular Beam Epitaxy |
Stanley Electric Co., Ltd. 1@Yamamuro Tomofumi
1, Ogawa Akio 1, Kotani Hiroshi 1, Kato Hiroyuki 1, Sano Michihiro 1 |
| |
12 |
Effect of Se doping on the growth of ZnO thin films
by MBE |
Stanley Electric Co., Ltd.@Tomofumi Yamamuro, Akio
Ogawa, Hiroshi Kotani, *Hiroyuki Kato, Michihiro Sano |
| ’ |
13 |
Growth of ZnO and Znqsubj1-xq/subjMgqsubjxq/subjO
films by liquid phase epitaxy method II |
Mitsubisi Gas Chemical Co.,INC. 1, NIMS 2@Jun Kobayashi
1, Hideyuki Sekiwa 1, Miyuki Miyamoto 1, Naoki Ohashi 2, Hajime Haneda 2,
Isao Sakaguchi 2, Yoshiki Wada 2 |
| |
14 |
ZnCuxO alloy films grown
by RPE-MOCVD |
Res. Inst. Electronics, Shizuoka Univ.@*Hu bo 1,
Masahiko Adachi, Tsuyoshi Aoshima, Nakamura Atsushi, Temmyo Jiro |
| |
15 |
Dependence of Pt/ZnMgO Schottky barrier height
on Mg mole fraction |
Tokyo Univ. of Science@*Takuma Fujii 1, Akio Furukawa
1 |
| |
16 |
Improvement of photoresponse characteristics on
a Pt/MgXZn1-XO Schottky photodiode |
Iwate Ind. Res. Inst. 1,Tohoku Univ. 2,IIS 3,Lightom
Inc. 4,Center for Regional Collabo. Iwate Univ. 5@*Endo Haruyuki 1,2, Kikuchi
Michiko 1,Ashioi Msafumi 1,Hasegawa Tatsuo 1,Takahashi Kyo 1,Meguro Kazuyuki
1,Sugibuchi Mayo 3,Takahashi Kousuke 3, Goto Shunsuke 4,Hane Kazuhiro 2,Kashiwaba
Yasube 5 |
| |
17 |
Fabrication of Pt based alloy Schottky contacts
on ZnO by Combinatorial Method |
NIMS 1, CREST-JST 2@*Takahiro Nagata 1,2, Janos
Volk 1, Michiko Yoshitake 1, Toyohiro Chikyow 1,2 |
| ’ |
18 |
Fabrication and electrical properties of Schottky
junctions between the -c surface of ZnO and a conducting polymer |
IMR Tohoku Univ. 1,JST-CREST 2@*Ryosuke Y. Gunji
1, Masaki Nakano 1, Atsusi Tsukazaki 1, Akira Ohtomo 1, Tomoteru Fukumura
1, Masaki Kawasaki 1&2 |
| ’ |
19 |
Re-growth of ZnO/ZnMgO heterostructures by MBE
on sputtered ZnMgO initiation layers on glass substrate |
Osaka Inst. of Tech., Nanomaterials Microdevices
Res. Center@*Inoue Tomoyuki 1, Hashimoto Takahito 1, Kawasaki Motoki 1,
Koike Kazuto 1, Ogata Ken-ichi 1, Sasa Shigehiko 1, Inoue Masataka 1, Yano
Mitsuaki 1 |
| |
20 |
Electrical properties of ZnO-TFTs fabricated with
sputtering at room temperature |
TRADIM 1, NEC LCD Technologies, Ltd. 2, NEC Corporation
3@@* Mitsuru Nakata 1, Kazushige Takechi 1, Shigeyoshi Otsuki 1, Hirotaka
Yamaguchi 2, and Setsuo Kaneko 2,3 |
| |
21 |
Fabrication and characterization of TFTs using
ZnO thin films grown by plasma-assisted molecular beam deposition |
Univ. of Yamanashi 1, Yamanashi Industrial Tech.
Center 2, Nakaya Corp. 3@*Muranaka Tsutomu 1, Sakurai Yuuki 1, Sakano Tatsumi
1, Nabetani Yoichi 1, Akitsu Tetsuya 1, Kato Takamasa 1, Matsumoto Takashi
1, Hagihara Shigeru 2, Abe Osamu 2, Hiraki Satoshi 3, Fujikawa Yuichirou
3 |
| |
22 |
ZnO high electron mobility transistor |
AIST 1, TUS 2@*Hitoshi Tampo1, Hajime Shibata1,
Keigou Maejima1, Akimasa Yamada1, Paul Fons1, Tomoyuki Tainaka2, Yusuke
Chiba2, Hisashi Kanie2, Shigeru Niki1 |
| ’ |
23 |
Improvement of red emission EL FWHM from ZnO-based
DH junction |
Res. Inst. Electronics, Shizuoka Univ. 1, Graduate
School of Sci. and Tech., Shizuoka Univ. 2@*Ohashi Toshiya 1, Yamamoto Kenji
2, Nakamura Atsushi 1, Temmyo Jiro 1 |
| 22.1 Joint
Session K: Zinc Oxide and Related Functional Materials |
| September 7 |
| 7a-ZQ-@/ I,II |
| |
|
Short Presentation (5min.) 9:00`11:50
7a-ZQ-1`29@Poster Session 13:00`15:00 |
| |
1 |
Young Scientist Award for the Presentation of an Excellent Paper
Preparation of single-crystalline ZnO thin films
by fine channel mist CVD method (2). |
Dept. Elec. Sci. & Eng., Kyoto Univ. 1, Int. Innovation
Center, Kyoto Univ. 2@*Kawaharamura Toshiyuki 1, Nishinaka Hiroyuki 1, and
Fujita Shizuo 2 |
| ’ |
2 |
Low temperature growth of ZnO thin films by linear
source ultrasonic spray chemical vapor deposition |
Kyoto Univ. Dept. Electrom. Sci. Eng. 1, Kyoto
Univ. IIC 2@*Nishinaka Hiroyuki 1, Kawaharamura Toshiyuki 1, Fujita Shizuo
2 |
| |
3 |
Growth of ZnO films by MOCVD with high speed rotating
disk reactor |
Shimane Univ. 1, JST 2@*T.Yamamae 1, N.Nishimoto
2, K.Senthilkumar 1, T.Kaku 1, T.Matsuo 1, Y.Fujita 1 |
| |
4 |
Growth of ZnO single crystal on C-sapphire substrate
by Oxide-MOCVD |
Stanley Electric Co., Ltd.@*Tanaka Kazufumi 1,Makishima
Masayuki 1,Horio Naochika 1,Kato Hiroyuki 1,Sano Michihiro 1 |
| |
5 |
Growth of MgZnO films on +c-plane ZnO substrates
by molecular-beam epitaxy |
Rohm Co.,Ltd. 1, Tohoku Univ. 2@Nishimoto Yoshio
1, Takamizu Daijyu 1, Sasaki Atsushi 1, Fujii Tetsuo 1, Tanabe Tetsuhiro
1, Nakahara Ken 1, Kawasaki Masashi 2 |
| £ |
6 |
High quality ZnO film growth on sapphire using
Cr2O3 buffer layer by plasma assisted molecular beam epitaxy |
IMR Tohoku Univ.1, Chungnam Univ.2, Korea Maritime
Univ.3,CIR Tohoku Univ.4@ *Park Jinsub1, Minegishi Tsutomu1, Park Seunghwan1,Im
inho1, Hanada Takashi1, Hong Soonku2,Chang Jiho3, Cho Meoungwhan1.4, Yao
Takafumi1.4 |
| |
7 |
Fabrications and characterizations of periodically
polarity inverted ZnO films |
CIR, Tohoku Univ. 1, IMR, Tohoku Univ. 2, Seoul
National Univ. 3@*Tsutomu Minegishi1, Jaehoon Kim3, Dongho Kim3, Seunwhan
Park1, Jinsub Park1, Heonsu Jeon3, Takafumi Yao1,2 |
| |
8 |
SHG from periodically polarity inverted ZnO films |
CIR, Tohoku Univ. 1, Basic Research Laboratries,
NTT 2, IMR, Tohoku Univ. 3@Tsutomu Minegishi 1, Atsushi Ishizawa 2, Seungwhan
Park 1, Jinsub Park 1, Hidetoshi Nakano 2, Takafumi Yao 1,3 |
| |
9 |
High Temperature MBE Growth of ZnO Films with Using
Ionized Zn Flux |
Fujikura Ltd. 1, Chiba Univ. 2, VBL Chiba Univ.
3, InN-Project as a CREST-program of JST 4@*Kaifuchi Yoshikazu 1, Omichi
Koji 1, Fujimaki Munehisa 1, Jin Taolai 2, Yoshikawa Akihiko 2,3,4 |
| |
10 |
Growth Mechanism of Al-doped ZnO Grown by MOCVD
Using Zn-Acetylacetonate |
Ishinomaki Senshu Univ.1@Konno Fumiaki 1, *Yasuda
Takashi 1 |
| |
11 |
ZnO crystal growth by chemical vapor transport |
Nagoya Inst. of Tech.@Yuta Banno, Kazuya Koizumi,
Koji Abe, and Osamu Eryu |
| |
|
Break 10:05`10:20 |
|
| |
12 |
Epitaxial growth of ZnO/(111)Pt by electrochemical
deposition method |
Osaka Prefecture Univ. 1@*Fujita Akio 1, Oshio
Takeshi 1, Nakahira Atsushi 1 |
| |
13 |
MOCVD growth and characterization of ZnO films
on glass substrates using Zn-MOPD as a Zn source |
Univ of Yamanashi 1@Ikuo Hatanaka 1, *Yoichi Nabetani
1, Tsutomu Muranaka 1, Takamasa Kato 1, and Takashi Matsumoto 1 |
| |
14 |
Surface Morphology of Polycrystalline ZnO Films
Prepared by Metal Organic Molecular Beam Deposition |
Ehime Univ, Graduate School of Science and Engineering@*Yura
Shinichiro 1,Miyata Akira 1,Yudate Shinji 1,Terasako Tomoaki 1,Shimomura
Satoshi 1,Shirakata syo 1 |
| |
15 |
Growth of Ga-doped ZnO single-crystalline layer
by UHV sputtering method |
Tokyo Denki Univ 1@*Abe Takuya 1, Matsuo Youhei
1, Shinoda Hiroyuki 1, Mutsukura Nobuki 1 |
| |
16 |
Effects of substrate temperature and Zn precursors
on growth of ZnO by atomic layer deposition |
Kochi Univ. of Tech. 1, Kochi National Col. Tech.
2@*Makino Hisao 1, Kishimoto Seiichi 2, Miyake Aki 1, Yamada Takahiro 1,
Yamamoto Naoki 1, Yamamoto Tetsuya 1 |
| |
17 |
Annealing effects on density of poly-ZnO thin film
prepared by RF-magnetron sputtering |
Kochi Univ.of Technol.1,Kochi IPC 2,KOCHI CASIO
3@*Yumeji Takashige 1,Tokiyoshi Matsuda 1,2,Takahiro Hiramatsu 2,3,Takuya
Nebiki 1,Akihiro Shimokata 2,Hiroshi Furuta 1,2,Mamoru Furuta 1,2,Takashi
Hirao 1,2,Tadashi Narusawa 1 |
| |
18 |
Effect of rf-power on average crystallite size
of ZnO films deposited by rf magnetron sputtering. |
Kochi Univ. of Tech.1, Kochi IPC2, KOCHI CASIO3,
TOSADENSHI4@M. Furuta1,2, T. Matsuda1,2, Chaoyang Li1,2,T. Hiramatsu2,3,H.
Furuta1,2,Y. Takashige1,M. Tachikawa4,H. Hamaguchi4,T. Hirao1,2 |
| |
19 |
Optical Properties of Zinc Oxide Thin Films Deposited
by RF Magnetron Sputtering - Power Dependence - |
TOSADENSHI Ltd. 1,Kochi Univ. of Tech. 2,Kochi
IPC 3,KOCHI CASIO Co. Ltd. 4@Tachikawa Miki 1,Matsuda Tokiyoshi 2,3,Li Chaoyang
2,3,Hiramatsu Takahiro 3,4,Furuta Hiroshi 2,3,Takashige Yumeji 2,Hamaguchi
Hirofumi 1,Furuta Mamoru 2,3,Hirao Takashi 2,3 |
| |
20 |
Influence of amorphous buffer layer on the crystallinity
of sputter-deposited ZnO films |
KUT 1, Kochi IPC 2, Kochi CASIO 3, CASIO 4@*Matsuda
Tokiyoshi 1 2, Furuta Mamoru 1 2, Furuta Hiroshi 1 2, Hiramatsu Takahiro
2 3, Hokari Hitoshi 4, Li Chaoyang 1 2, Hirao Takashi 1 2 |
| |
21 |
Growth of ZnO thin films by plasma-enhanced chemical
vapor deposition with sputtering |
Osaka Univ. 1@Yamaoka Keisuke 1, Yamaguchi Takashi
1, Terai Yoshikazu 1, Fujiwara Yasufumi 1 |
| ’ |
22 |
Structure analysis of chemically-synthesized ZnO
nanorods in surfactant aqueous solution |
Kobe Univ., VBL 1, Dep. Mech. Eng. 2, Res. Inst.
Elec. Mag. Mater. 3@Hiroyuki Usui 1,3, Hidehiro Yasuda 2 |
| |
23 |
Catalyst size dependence on ZnO nanobelt growth |
Univ. of Tsukuba 1, NEC 2@*Miyazaki Hiroshi 1,
Higashi Koudai 1, Nakazawa Shotaro 1, Ichihashi Toshinari 2, Ishida Masahiko
2, Fujita Jun-ichi 1 |
| |
24 |
Selective growth of ZnO nanowires on a substrate
fabricated by RIE |
Chiba Univ.@*Amano Kazuhiko 1,Yamamoto Kazunuki
1 |
| |
25 |
ZnO nanorods growth on a polyimide substrate |
Univ. Tokyo 1, JST SORST 2,POSTECH 3@*Kitamura
Kokoro 1, Yatsui Takashi 2, Ohtsu Motoichi 1,2, Gyu-Chul Yi 3 |
| |
26 |
Preparation of ZnO Nanostructures on Au Nanoparticle
Coated Sapphire Substrate by Atmospheric-pressure CVD |
Ehime Univ. 1@*Terasako Tomoaki 1, Shigematsu Yousuke
1, Hiji Masanori 1, Yamaguchi Tomoya 1, Yamashita Shinji 1, Shirakata Sho
1 |
| £ |
27 |
Optical Characteristics of ZnO nanowires by Nanoparticle-Assisted
Pulsed-Laser Ablation Deposition |
Fudan Univ. 1,Kyushu Univ. 2@*Guo Ruiqian 1,Nishimura
Jun 2,Higashihata Mitsuhiro 2,Suehiro Junya 2,Okada Tatsuo 2 |
| |
28 |
Low-Temperature Wet Chemical Synthesis of ZnO Nano-Micro
Structures for Use in Gas Sensing |
The Univ. Tokyo@Mikuniya Kentaro 1,Shuzo Masaki
1,Yamada Ichiro 1,Delaunay Jean-Jacques 1 |
| |
29 |
Low-temperature fabrication and random laser action
of doped zinc oxide nanoneedles |
Nagoya Inst Technol. 1, Nanyang Tech Univ. 2@ *Ide
Norhiro 1,Hatano Hokoto 1,Masaki Tanemura 1,Hayashi Yasuhiko 1,S.P.Lau 2,H.Y.Yang
2,Kato jyun 3 |