Development of a high‐performance and cost‐effective in‐vacuum undulator

In‐vacuum undulators (IVUs), which have become an essential tool in synchrotron radiation facilities, have two technical challenges toward further advancement: one is a strong attractive force between top and bottom magnetic arrays, and the other is a stringent requirement on magnetic materials to a...

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Veröffentlicht in:Journal of synchrotron radiation 2024-09, Vol.31 (5), p.1154-1160
Hauptverfasser: Imamura, Kei, Kida, Yuichiro, Kagamihata, Akihiro, Seike, Takamitsu, Yamamoto, Shigeru, Ohashi, Haruhiko, Tanaka, Takashi
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Sprache:eng
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Zusammenfassung:In‐vacuum undulators (IVUs), which have become an essential tool in synchrotron radiation facilities, have two technical challenges toward further advancement: one is a strong attractive force between top and bottom magnetic arrays, and the other is a stringent requirement on magnetic materials to avoid demagnetization. The former imposes a complicated design on mechanical and vacuum structures, while the latter limits the possibility of using high‐performance permanent magnets. To solve these issues, a number of technical developments have been made, such as force cancellation and modularization of magnetic arrays, and enhancement of resistance against demagnetization by means of a special magnetic circuit. The performance of a new IVU built upon these technologies has revealed their effectiveness for constructing high‐performance IVUs in a cost‐effective manner. A high‐performance in‐vacuum undulator has been developed in a cost‐effective manner.
ISSN:1600-5775
0909-0495
1600-5775
DOI:10.1107/S1600577524005873