2006Unpublished venueRequires access

IN-ACHROMATIC SUPERCONDUCTING WIGGLER IN TAIWAN LIGHT SOURCE: INSTALLATION AND TEST RESULTS

C. H. Chang, Ching-Shiang Hwang, H. H. Chen, F. Y. Lin, Min‐Jie Huang, T.C. Fan

Open publisher page 2 citations

Abstract

A 16-pole in-achromatic superconducting wiggler (IASW) has been installed and operated in the achromatic section of a 1.5 GeV storage ring to increase the generation of high flux X-ray photon beams for Taiwan Light Source (TLS), The 3.1 Tesla superconducting wiggler is operated in a 4.5-K liquid helium cryogenic system. This work describes the operation experience and test results of the in-achromatic superconducting wiggler.

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What this paper is about

A 16-pole in-achromatic superconducting wiggler (IASW) has been installed and operated in the achromatic section of a 1.5 GeV storage ring to increase the generation of high flux X-ray photon beams for Taiwan Light Source (TLS), The 3.1 Tesla superconducting wiggler is operated in a 4.5-K liquid helium cryogenic system. This work describes the operation experience and test results of the in-achromatic superconducting wiggler.

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Available abstract

A 16-pole in-achromatic superconducting wiggler (IASW) has been installed and operated in the achromatic section of a 1.5 GeV storage ring to increase the generation of high flux X-ray photon beams for Taiwan Light Source (TLS), The 3.1 Tesla superconducting wiggler is operated in a 4.5-K liquid helium cryogenic system. This work describes the operation experience and test results of the in-achromatic superconducting wiggler.

Key concepts: Wiggler, Achromatic lens, Physics, Optics, Superconducting magnet, Superconductivity, Advanced Photon Source, Liquid helium

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