2015JACOWOpen access

Development and Performance of 1.1-m Long Superconducting Undulator at the Advanced Photon Source

Yury Ivanyushenkov, C. Doose, J. D. Fuerst, E. Gluskin, K. Harkay, Quentin Hasse, Matthew Kasa, Yuko Shiroyanagi, D. Skiadopoulos, E. Trakhtenberg

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Abstract

Development of superconducting undulators continues at the Advanced Photon Source (APS). The second superconducting undulator, SCU1, has been built and installed in the storage ring of the APS. This undulator has a 1.1-m long superconducting magnet and utilizes an improved version of the cryostat of the first superconducting undulator, SCU0. The results of the cold test of the SCU1, and its performance in the APS storage ring are presented in this paper.

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What this paper is about

Development of superconducting undulators continues at the Advanced Photon Source (APS). The second superconducting undulator, SCU1, has been built and installed in the storage ring of the APS. This undulator has a 1.1-m long superconducting magnet and utilizes an improved version of the cryostat of the first superconducting undulator, SCU0. The results of the cold test of the SCU1, and its performance in the APS storage ring are presented in this paper.

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Available abstract

Development of superconducting undulators continues at the Advanced Photon Source (APS). The second superconducting undulator, SCU1, has been built and installed in the storage ring of the APS. This undulator has a 1.1-m long superconducting magnet and utilizes an improved version of the cryostat of the first superconducting undulator, SCU0. The results of the cold test of the SCU1, and its performance in the APS storage ring are presented in this paper.

Key concepts: Undulator, Photon, Superconductivity, Physics, Optics, Condensed matter physics, Laser

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