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Superconducting Multipole Wigglers for Generating Synchrotron Radiation at the Budker Institute of Nuclear Physics
Physics of Particles and Nuclei Letters Pub Date : 2020-07-27 , DOI: 10.1134/s1547477120040421 V. A. Shkaruba , A. V. Bragin , A. A. Volkov , A. I. Erokhin , A. V. Zorin , V. Kh. Lev , N. A. Mezentsev , A. N. Safronov , V. M. Syrovatin , O. A. Tarasenko , S. V. Khrushchev , V. M. Tsukanov
中文翻译:
Budker核物理研究所产生同步辐射的超导多极摇摆器
更新日期:2020-07-27
Physics of Particles and Nuclei Letters Pub Date : 2020-07-27 , DOI: 10.1134/s1547477120040421 V. A. Shkaruba , A. V. Bragin , A. A. Volkov , A. I. Erokhin , A. V. Zorin , V. Kh. Lev , N. A. Mezentsev , A. N. Safronov , V. M. Syrovatin , O. A. Tarasenko , S. V. Khrushchev , V. M. Tsukanov
Abstract
Superconducting multipole insertion devices (wigglers and undulators) used to generate synchrotron radiation significantly increase the photon flux, especially in the hard spectral region. Over the past 35 years, more than 25 superconducting wigglers for leading centers of synchrotron radiation have been created at the BINP. A cryogenic system based on cryocoolers has been developed, which makes is possible to operate superconducting insertion devices for several years without consuming liquid helium. In this paper, the characteristics of various superconducting insertion devices created at the BINP are presented. The design features and recent advances in the development of the magnetic and cryogenic system with liquid and indirect cooling are discussed.中文翻译:
Budker核物理研究所产生同步辐射的超导多极摇摆器