First principle measurements of thermal emittance for copper and magnesium

D. Xiang, Wenhui Huang, Yingchao Du, Lixin Yan, Ren-kai Li, Chuan-xiang Tang, Yuzheng Lin, Sung-Ju Park, Jangho Park
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引用次数: 7

Abstract

There are growing interests in generation, preservation and applications of high brightness electron beam. With the rapid development in the techniques for emittance compensation, laser shaping and generation of ellipsoidal beam, we are approaching the limit--the uncorrelated thermal emittance. In this paper, we describe the design of the angle-resolved photoemission spectroscopy for measurements of thermal emittance for Cu and Mg. The measurement is conducted in a field-free region. The energy spectrum and angular distribution of the electrons will be measured immediately after its emission and further used to reconstruct the initial phase space and the corresponding thermal emittance. We also show how cathode surface roughness and laser incidence angle as well as its polarization state affect the quantum efficiency and thermal emittance.
铜和镁热辐射率的第一性原理测量
高亮度电子束的产生、保存和应用受到越来越多的关注。随着发射度补偿、激光整形和椭球光束产生技术的迅速发展,我们正在接近极限——不相关热发射度。本文描述了测量Cu和Mg的热发射度的角分辨光发射光谱的设计。测量是在无磁场区域进行的。在发射后立即测量电子的能谱和角分布,并进一步用于重建初始相空间和相应的热发射度。我们还展示了阴极表面粗糙度、激光入射角及其极化状态对量子效率和热发射率的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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