Improvement of Sensitivity to Temperature of Optical Fiber Sensor at Cryogenic Temperature

Author:

SUGINO Motohiko1,OGATA Masafumi1,MIZUNO Katsutoshi1,HASEGAWA Hitoshi1

Affiliation:

1. Cryogenic Systems Laboratory, Maglev Systems Technology Division

Publisher

Railway Technical Research Institute

Subject

Mechanical Engineering

Reference15 articles.

1. [1] Iwamatsu, M., Ogata, M., Seino, H., Herai, T., and Asahara, T., "Development of Superconducting Magnet for Simplified Ground Coils," Quarterly Report of RTRI, Vol.47, No.1, pp.12-17, 2006.

2. [2] Kusada, S., Igarashi, M., Nemoto, K., Okutomi, T., Hirano, S., Kuwano, K., Tominaga, T., Terai, M., Kuriyama, T., Tasaki, K., Tosaka, T., Marukawa, K., Hanai, S., Yamashita, T., Yanase, Y., Nakao, H., and Yamaji, M., "The Project Overview of the HTS Magnet for Superconducting Maglev," IEEE Trans. Appl. Supercond., Vol.17, Issue 2, pp.2111-2116, 2007.

3. [3] Kalsi, S.S., "The application of high temperature superconductors to Maglev magnets," Appl. Supercond., Vol.3, Issues 1-3, pp.163-168, 1995.

4. [4] D'Ovidio, G., Crisi, F., Navarra, A., and Lanzara, G., "Comparison of maglev behavior of three inductors with static and dynamic field interacting with a HTC superconductor: Test and evaluation," Physica C, Vol.449, Issue 1, pp.15-20, 2006.

5. [5] Nagashima, K., Seino, H., Sakai, N., and Murakami. M., "Superconducting magnetic bearing for a flywheel energy storage system using superconducting coils and bulk superconductors," Physica C, Vol.469, Issues 15-20, pp.1244-1249, 2009.

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