Development of S-band photocathode RF guns at Tsinghua University

This study aims to explain the development of S-band photocathode RF guns at Tsinghua University, with especial attention on the progress of guns developed after 2011. Two types of RF guns were developed based on the BNL/SLAC/UCLA gun prior 2011. These guns have been operated as electron sources for...

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Published inNuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment Vol. 834; pp. 98 - 107
Main Authors Zheng, Lianmin, Du, Yingchao, Zhang, Zhe, Qian, Houjun, Yan, Lixin, Shi, Jiaru, Zhang, Zhen, Zhou, Zheng, Wu, Xiaowei, Su, Xiaolu, Wang, Dong, Tian, Qili, Huang, Wenhui, Chen, Huaibi, Tang, Chuanxiang
Format Journal Article
LanguageEnglish
Published Elsevier B.V 21.10.2016
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Summary:This study aims to explain the development of S-band photocathode RF guns at Tsinghua University, with especial attention on the progress of guns developed after 2011. Two types of RF guns were developed based on the BNL/SLAC/UCLA gun prior 2011. These guns have been operated as electron sources for Tsinghua Thomson scattering X-ray source (TTX), MeV ultrafast electron diffraction, and Shanghai deep ultraviolet FEL test facility. Based on our operation experiences and other gun modifications worldwide, numerous improvements have been proposed, and seven third-type guns have been designed and fabricated since 2011. Cold tests of all third-type guns have been completed, confirming a significantly improved quality factor and mode separation. The first third-type gun has been installed on TTX and operated for four years, demonstrating high gradient, low dark current, stable quantum efficiency, and small emittances. The optimal transverse emittance was εx=0.56mmmrad, εy=0.66mmmrad for 200pC with a peak current of 25A, and εx=0.78mmmrad, εy=0.92mmmrad for 500pC with a peak current of 62.5A under a 110MV/m gun gradient.
ISSN:0168-9002
1872-9576
DOI:10.1016/j.nima.2016.07.015