Accès ouvert déclaré
2020
article
An arm length stabilization system for KAGRA and future gravitational-wave detectors
T. Akutsu, Masaki Ando, K. Arai, Y. Arai, S. Araki, A. Araya, N. Aritomi, Y. Aso, S. Bae, Y Bae, Luca Baiotti, R. Bajpai, M. A. Barton, K. C. Cannon, E. Capocasa, M. Chan, Chen‐Li Cheng, K Chen, Y Chen, Hong-Yu Chu, Katsumi Doi, S. Eguchi, Yutaro Enomoto, R. Flaminio, Yoshinori Fujii, Masataka Fukunaga, Mitsuhiro Fukushima, G-G Ge, Masatoshi Hagiwara, S. Haino, K. Hasegawa, H. Hayakawa, K. Hayama, Y. Himemoto, Y. Hiranuma, N. Hirata, Eiichi Hirose, Z. Hong, B. H. Hsieh, G-Z. Huang, P-W Huang, Y.-J. Huang, B. Ikenoue, S. Imam, Kohei Inayoshi, Yuki Inoue, Kunihito Ioka, Y. Itoh, K. Izumi, K. Jung, P. Jung, T. Kajita, M. Kamiizumi, Shunsuke Kanbara, Nobuyuki Kanda, G. Kang, Kyohei Kawaguchi, N. Kawai, T. Kawasaki, Chunglee Kim, J C Kim, W S Kim, N. Kimura, Naoki Kita, H. Kitazawa, Y. Kojima, K. Kokeyama, K. Komori, A. K. H. Kong, Kei Kotake, C. Kozakai, R. Kozu, S. Kumar, J. Kume, C. M. Kuo, H-S. Kuo, Sachiko Kuroyanagi, K. Kusayanagi, K. Kwak, H. K. Lee, H. W. Lee, Ray‐Kuang Lee, M. Leonardi, L C-C Lin, Chun-Yu Lin, G C Liu, M. Marchio, Yuta Michimura, N. Mio, O. Miyakawa, A. Miyamoto, Yuki Miyazaki, K. Miyo, S. Miyoki, S. Morisaki, Y. Moriwaki, M. Musha, K Nagano, S. Nagano, K. Nakamura, Hiroyuki Nakano, M. Nakano, R. Nakashima, T. Narikawa, R. Negishi, W-T Ni, A. Nishizawa, Y. Obuchi, W. Ogaki, J. J. Oh, S. H. Oh, M. Ohashi, N. Ohishi, Masashi Ohkawa, Noriaki Ohmae, K. Okutomi, K. Oohara, C. Ooi, S. Oshino, K. Pan, H. Pang, J. Park, F. E. Peña Arellano, I. M. Pinto, Norichika Sago, S. Saito, Y. Saito, K Sakai, Yusuke Sakai, Y. Sakuno, S. Sato, Takashi Sato, T. Sawada, T. Sekiguchi, Y. Sekiguchi, S. Shibagaki, Ryuma Shimizu, T Shimoda, K. Shimode, H. Shinkai, T. Shishido, A. Shoda, K. Somiya, Edwin J. Son, Hajime Sotani, R. Sugimoto, Takamasa Suzuki, H. Tagoshi, Hirotaka Takahashi, Ryutaro Takahashi, A. Takamori, S. Takano, H. Takeda, M. Takeda, Hiroki Tanaka, K. Tanaka, Taiki Tanaka, S. Tanioka, E. N. Tapia San Martín, D Tatsumi, S. Telada, T. Tomaru, Y. Tomigami, T. Tomura, F. Travasso, L. Trozzo, T. Tsang, K. Tsubono, S. Tsuchida, Toshihiro Tsuzuki, D. Tuyenbayev, N. Uchikata, Takashi Uchiyama, A. Ueda, T. Uehara, K. Ueno, G. Ueshima, F. Uraguchi, T. Ushiba, Maurice H. P. M. van Putten, H. Vocca, J Wang, Chien-Ming Wu, H. Wu, S. Wu, W-R. Xu, Tomohiro Yamada, Kohei Yamamoto, K. Yokogawa, J. Yokoyama, T. Yokozawa, T. Yoshioka, H. Yuzurihara, S. Zeidler, Yang Zhao, Z-H Zhu
16Citations signalées, ce qui n’est pas une note de qualité
21Institutions déclarées
6Pays d’affiliation déclarés
Rattachement africain : jp, us, kr, tw, fr, cn.
Niveau de preuve : code pays fourni par la source.
Le résumé fourni par la source
Abstract Modern ground-based gravitational wave (GW) detectors require a complex interferometer configuration with multiple coupled optical cavities. Since achieving the resonances of the arm cavities is the most challenging among the lock acquisition processes, the scheme called arm length stabilization (ALS) had been employed for lock acquisition of the arm cavities. We designed a new type of the ALS, which is compatible with the interferometers having long arms like the next generation GW detectors. The features of the new ALS are that the control configuration is simpler than those of previous ones and that it is not necessary to lay optical fibers for the ALS along the kilometer-long arms of the detector. Along with simulations of its noise performance, an experimental test of the new ALS was performed utilizing a single arm cavity of KAGRA. This paper presents the first results of the test where we demonstrated that lock acquisition of the arm cavity was achieved using the new ALS. We also demonstrated that the root mean square of residual noise was measured to be 8.2 Hz in units of frequency, which is smaller than the linewidth of the arm cavity and thus low enough to lock the full interferometer of KAGRA in a repeatable and reliable manner.
Ce résumé expose les affirmations des auteurs. BNTIC ne l’interprète pas comme une validation indépendante des résultats.
Le contrôle bibliographique ouvert
DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.
- Titre Crossref
- An arm length stabilization system for KAGRA and future gravitational-wave detectors
- Date Crossref
- 13/01/2020
- Éditeur
- IOP Publishing
- Type
- journal-article
Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.
Les institutions déclarées
Une affiliation ne permet pas de déduire la nationalité d’un auteur.
Les sujets associés
Pulsars and Gravitational Waves ResearchGeophysics and Sensor TechnologyAdvanced Frequency and Time Standards