摘要: Time Projection Chambers (TPCs) are extensively used in collider experiments due to their superior physical performance. Particularly for future positron-electron colliders in Higgs physics studies, the next-generation TPC technology must provide better momentum resolution and improved spatial resolution. The avalanche fluctuation factor, a crucial parameter affecting spatial resolution, is challenging to measure accurately, whether directly or indirectly. This research leveraged the exceptional stability and ionization properties of ultraviolet lasers to achieve a precise determination of the avalanche fluctuation factor. The test outcomes were found to agree with the calculated values at the same gain levels, thereby validating the reliability of the experimental findings.
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来自:
Chang, Miss Yue
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分类:
物理学
>>
核物理学
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备注:
已向《Nuclear Science and Techniques》投稿
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引用:
ChinaXiv:202412.00006
(或此版本
ChinaXiv:202412.00006V1)
DOI:10.12074/202412.00006
CSTR:32003.36.ChinaXiv.202412.00006
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科创链TXID:
318098c1-af37-472b-ae1d-a435f4bcebf4
- 推荐引用方式:
Qi, Dr. Huirong 祁辉荣,Chang, Miss Yue,She, Mr. Xin,Zhang, Miss Jinxian,Dai, Dr. Hongliang,Yu, Chunxun,Wu, Prof. Linghui,Zhao, Dr. Guang,Wang, Jianchun,Deng, Dr. Zhi,Wang, Prof. Yifang,Chen, Prof. Yuanbo,Zhang, Miss Jian.Investigation of the Avalanche Fluctuations Factor in Time Projection Chamber Detector Using 266 nm UV Laser.中国科学院科技论文预发布平台.[DOI:10.12074/202412.00006]
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