| 2 Measurement and Control |
| 2.1 Instruments and Control |
| March 28 13:00〜18:00 |
| 28p-B- / I |
| | 1 | Internal gas analysis technique of airtight packages | Mitsubishi Electric 1 *Kinugawa Masaru 1 |
| | 2 | Preparation of pH sensitive silica gel using sol-gel method | Toyo Univ. *Hiroaki Aizawa 1, Shogo Toma 1, Tooru Katsumata 1, Shuji Komuro 1, Takitaro Morikawa 1 |
| | 3 | Development of the optical fiber taste sensor using a lipid membrane | Univ. of Yamanashi 1 * Gatayama Makoto 1,Morisawa Masayuki 1,Mutou Shinzou 1 |
| △ | 4 | Analysis of bacterial sensing using a porous monolith type ion exchanger | Osaka Univ. 1,TRI of Osaka 2 *Miyano Kazuki 1,Hotta Saori 1,Aoki Hidemitsu 1,Fujiwara Nobuaki 2,Kimura Chiharu 1,Sugino Takashi 1 |
| △ | 5 | Glucose sensing of due to porous monolith type ion exchanger | Osaka Univ. 1,Organo Corp. 2 *Hotta Saori 1,Miyano Kazuki 1,Aoki Hidemitu 1,Yano Daisaku 2,Sano Kazuhiko 2,Yamanaka Kouji 2,Kimura Tiharu 1,Sugino Takasi 1 |
| △ | 6 | Constitution of electrodes for resistance measurement of solution in high temperature | University of Yamanashi *Akifumi Nagasawa、Takao Mizota、Osamu Shimomura |
| | 7 | Characterisitics of long afterglow Ca and Sr based phosphorescent thermo-sensors | Toyo Univ. 1 Tokuno Satoshi 1, *Komuro Shuji 1, Aizawa Hiroaki 1, Katsumata Tooru 1, Morikawa Takitaro 1 |
| | 8 | Preparation and characteristics of fluorescence thermo-sensor using Cr doped YAlO3 crystals | Toyo Univ. 1, Sensor Photonics Research Center. 2 Kano Yumemi 1, Aizawa Hiroaki 2, Katsumata Tooru 2, Komuro Syuji 2, Morikawa Takitaro 2 |
| | 9 | Fluorescence thermo-sensor application of composite of garnet with silicone |
Sensor Photonics Research Center, Toyo Univ. 1 Tooru
Katsumata 1, Kaoru Orihara 1, Miki Kaneda 1, Yumemi Kano 1, Yuka Kiyokawa
1, Hiroaki Aizawa 1, Shuji Komuro 1, Takitaro Morikawa 1 |
| | | Break 15:15〜15:30 | |
| | 10 | Optical temperature measurement of silicon wafers using band gap shift | Toyo Univ. *Shinagawa Ryo 1,Iuchi Tohru 1 |
| | 11 | Rapid response hybrid-type surface temperature sensor | Toyo Univ.1 *Hiraka kensuke 1,Gogami astusi 1,Iuchi Tohru 1 |
| | 12 | Evaluation of thermal conductivity by a periodical heating thermoreflectance method | Kobe Steel. 1, Kobelco Res. Inst. 2 *Miyake Aya 1, Miyake Syugo 2, Takamatsu Hiroyuki 1, Araki Syunji 2 |
| | 13 | Evaluation of thermal conductivity of Cu alloy thin films by a periodical heating thermoreflectance method | Kobelco Res.Inst. 1, Kobe Steel. 2 * Miyake Syugo 1, Miyake Aya 2, Takamatsu Hiroyuki 2, Araki Syunji 1 |
| | 14 | Improvement in the Accuracy of a Plastic Sheet Thickness Gauge in the Manufacturing Process: New calibration Method of Sheet Thickness gauge | Interdisci. Grad. School of Sci. and Engi., Grad. School of Kinki Univ.1, Yamabun Electronics Co., Ltd.2 *Tojo Fumio 1,2, Hirakawa Shunzo 2, Toyoda Toshiyasu 2, Iguchi Masaru 2, Katayama Yusuke 2, Nishikubo Tokoh 1, Itoh Mineo 1 |
| | 15 | Nondestructive measurement method of the fringe of the thin film and planarized thin films in OLEDs | Shibaura Inst. of Technology 1,2, Corporate Manufacturing Engineering Center TOSHIBA Corp. 3, *Koizumi Hiroshi 1,3, Honma Tetsuya 2, Ooshiro Kenichi 3 |
| | 16 | Measurement of Ultrahigh Viscosity of Plastics | Nihon Techno-Plus corp. 1 *Kobayashi Hiroshi 1 |
| | 17 | POF type unvoiced vowel recognition system using Dynamic programming matching | Univ. of Yamanashi 1 *Natori Youiti 1, Taki Tomohito 1, Kai Ti 1, Morisawa Masayuki 1, Mutou Shinzou 1 |
| | 18 | Stochastic Control of Actuator | Yokohama Nat. Univ. 1 *Kobayashi Michihiro 1, Ishiwata Shingo 1 |
| | 19 | Development of a Precise Force Sensor using Highly Sensitive Thin Film Strain Gauges | Nano Control 1 *Furuta Atsushi 1, Iida Katsuhiko 1 |
| 2.2 Precision Measurements and Nanotechnology |
| March 28 10:00〜12:00 |
| 28a-B- / I |
| | 1 | RF Magnetic Shielding Effects of an Aggregated Carbon Plate Constructed by Carbon Tiles | Interdisci. Grad. School of Sci. and Engi., Kinki Univ. 1, Kasugai EMC Center, Kitagawa Indus. Co. Ltd. 2, Yamabun Electoronics. Co. Ltd. 3 Hiroki Endo 1, Hiro Norikane 1, Tokoh Nishikubo 1, Keisuke Itoh 2, Fumio Tojo 1, 3, Mineo Itoh 1 |
| | 2 | Stability evaluation of output voltage from Li/SOCL2 battery | National Institute of Advanced Industrial Science and Technology 1 *Nakanishi Masakazu 1 |
| | 3 | CCC resistance ratio bridge operated with SQUID voltage amplifier for low resistance measurements | National Institute of Advanced Industrial Science and Technology *Nakanishi Masakazu 1 |
| | 4 | Study on the detection of trace aqueous iodine with porous glass | Toyo Univ. 1, National Inst Environ Stud. 2, NTT Energy and Environ Systems Lab. 3 *Momono Kiyoyuki 1, Izumi Katsuyuki 1, Ihara Shogo 1, Utiyama Masahiro 2, Maruo Yasuko 3 |
| | 5 | Improvement of the performance of a porous glass based-NO2 sensor to humidity effect | Toyo Univ. 1, NTT-AT 2, National Institute for Environmental Studies 3, NTT Energy and Environment Systems Laboratories 4, *Ishii Yasuhiro 1, Izumi Katsuyuki 1, Shinji Tsuru 2, Utiyama Masahiro 3, Maruo Yasuko 4, |
| | 6 | Interrelation between the concentration of mineral and the taste of water |
Toyo Univ. Sensor Photonics Center 1, Toyo Univ.
2 Hiroaki Aizawa 1, Fumihiko Matuura 1, Tooru Katsumata 1, Shuji Komuro
1, Takitaro Morikawa 1, Yasuhiko Yoshida 2 |
| | 7 | RF Magnetic Shielding Effects of a Bincho-Charcoal Plate (5) |
Interdisci. Grad. School of Sci. and Engi., Kinki
Univ. 1,Kasugai EMC Center, Kitagawa Indus. Co. Ltd. 2, Yamabun Electric.
Co. Ltd. 3 Tokoh Nishikubo 1, Hiro Norikane 1, Hiroki Endo 1, Keisuke Itoh
2, Tojo Fumio 1, 3, Mineo Itoh 1 |
| | 8 | Surface Measurement System Using Thermal Fluctuations of the Cantilever - II | Dept. of Advanced Materials Science, Univ. of Tokyo *Tohru Kawanami, Norikatsu Mio, Shigenori Moriwaki, Noriaki Ohmae |
| 2.3 Measurements Standards |
| March 27 13:00〜17:30 |
| 27p-B- / I |
| | 1 | Nano-structure characterization using SR X-ray | AIST 1, KEK-PF 2 *Fujimoto Hiroyuki 1, Misumi Ichiko 1, Gonda Satoshi 1, Zhang Xiaowei 2 |
| | 2 | Modification on the AC Power Standard System to accommodate to high frequency (1) | NMIJ 1 *Yasuhiro Fukuyama 1, Haruna Nakajima 1, Yasuhiro Nakamura 1 |
| | 3 | Precise measurements of laser power with a double-configuration calorimeter in the range from 0.1-10 W | NMIJ, AIST *Endo Michiyuki 1, Kimura Sinji 1 |
| | 4 | Linearity standard using an integral sphere for 1W-level fiber power meters | AIST,NMIJ 1 *Seiji Mukai 1, Kuniaki Amemiya 1, Michiyuki Endo 1 |
| | 5 | Characterization of a photometer for LEDs measurement | AIST 1 Godo Kenji 1, Saito Terubumi 1, Shitomi Hirosi 1, Ichiro Saito 1 |
| | 6 | Optical fiber power standard: APMP-PR.S2 comparison measurements for 1, 10, 100 mW of optical fiber power | NMIJ, AIST 1 Amemiya Kuniaki 1, Mukai Seiji 1, Fukuda Daiji 1, Kimura Shinji 1, Endo Michiyuki 1 |
| | 7 | Development of Small Size Low Temperature Hydrogen Maser Experimental Frequency Standard– Microwave Cavity Frequency Tuning and Q-enhanced Circuit |
School of Biology-Oriented Science and Technology
Kinki University. 1,Shanghai Astronomical Observatory 2 *Koji Nakagiri 1,Yoshitomo
Tanjo 1, Takahide Kimura 1, Yong Cai 1.2 |
| | 8 | Development of Vertical Cesium Beam Frequency Standard – Phase Control of Microwave Cavity and Recycle Collimator | Kinki Univ. 1 *Tanaka Koji 1, Nakagiri Koji 1 |
| | 9 | Performance evaluation of the engineering model of space borne hydrogen maser for QZSS | NICT 1, ANRITSU 2, Ito Hiroyuki 1,Morikawa Takao 1,Hama Shinichi 1,Takizawa Masanori 2,Numata Yasuaki 2,Mattori Shigenori 2, |
| | | Break 15:15〜15:30 | |
| | 10 | Evaluation of the Optically Pumped Cesium Frequency Standard | AIST *Hagimoto Ken, Koga Yasuki, Ikegami Takeshi |
| | 11 | Buffer-gas effect for Cs atoms in a glass cell | NICT 1, Hitachi Adv. Res. Lab. 2 *Kyoya Fukuda 1, Ryuuzou Kawabata 2, Mizuhiko Hosokawa 1, Akihiko Kandori 2 |
| | 12 | Development of a femtosecond optical frequency comb for optical frequency standards IV | National Institute of Information and Communications Technology 1 Shigeo Nagano 1, Hiroyuki Ito 1, Ying Li 1, Mizuhiko Hosokawa 1 |
| | 13 | Research on frequency standard dissemination through optical fiber 1 | NICT 1 Kumagai Motohiro 1, Fujieda Miho 1, Gotoh Tadahiro 1, Hosokawa Mizuhiko 1 |
| | 14 | Current status of the new generating system of Japan Standard Time |
National Inst. of Information and Communications
Technology *Mizuhiko Hosokawa 1, Yuko Hanado 1, Fumimaru Nakagawa 1, Kuniyasu
Imamura 1, Noboru Kotake 1, Yoshiyuki Shimizu 1, Ryo Tabuchi 1, Lam Quoc
Tung 1, Yukio Takahashi 1, Takao Morikawa 1 |
| | 15 | Prediction of UTC(NICT) using hydrogen maser clocks | National Inst. of Information and Communications Technology 1 *Nakagawa Fumimaru 1,Hanado Yuko 1,Imamura Kuniyasu 1,Hosokawa Mizuhiko 1 |
| | 16 | Improvement of frequency drift in Japan Standard Time (2) | National Inst. of Information and Communications Technology 1 Yuko Hanado 1, Muzuhiko Hosokawa 1 |
| | 17 | Time comparison by GPS receivers for Japan Standard Time monitor | National Institute of Information and Communications Technology 1 *Kotake Noboru 1, Naito Yasuhiro 1, Shimizu Yoshiyuki 1, Nakagawa Fumimaru 1, Saito Haruo 1, Maeno Hideo 1, Imamura Kuniyasu 1, Takahashi Yukio 1 |