Abstract:
Automatic phase setting is essential for modern linacs which have increasingly stringent time demands for beam tune-up and fault compensation. A key challenge in automatic phase setting is obtaining an accurate knowledge of the position and phase offsets of all cavities. This study proposes a beam-based method that employs time-of-flight (TOF) experiments to for simultaneous alignment and phase calibration of a superconducting hadron linac. The proposed method is[A1] verified using a CAFe II accelerator at the Institute of Modern Physics, where offset measurements enable rapid tune-up via automatic phase setting, and the output beam energies closely match the predicted values. The proposed method is able to address longitudinal position shifts within cryomodules due to cool-down, readily applicable to superconducting hadron linacs, and expected to be employed in the upcoming commissioning of CiADS and HIAF.
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From:
黄骏仁
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Subject:
Nuclear Science and Technology
>>
Particle Accelerator
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Contribution:
Under Review
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Cite as:
ChinaXiv:202502.00181
(or this version
ChinaXiv:202502.00181V1)
DOI:10.12074/202502.00181
CSTR:32003.36.ChinaXiv.202502.00181
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TXID:
0490cf05-052c-449b-8b4c-7c3d3b66ce5b
- Recommended references:
Feng, Chi,Wong, Jonathan C.,Wang, Zhijun,Li, Zhongyi,Wang, Wangsheng,Chen, Weilong,He, Yuan.Automatic phase setting via time-of-flight alignment and phase calibration on a superconducting hadron linac.中国科学院科技论文预发布平台.[DOI:10.12074/202502.00181]
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