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用于电子束团电荷测定的闪烁屏的校准及跨实验室应用

Calibration and cross-laboratory implementation of scintillating screens for electron bunch charge determination.

作者信息

Kurz Thomas, Couperus Jurjen Pieter, Krämer Jakob Matthias, Ding Hao, Kuschel Stephan, Köhler Alexander, Zarini Omid, Hollatz Dominik, Schinkel David, D'Arcy Richard, Schwinkendorf Jan-Patrick, Osterhoff Jens, Irman Arie, Schramm Ulrich, Karsch Stefan

机构信息

Helmholtz-Zentrum Dresden-Rossendorf, Bautzner Landstraße 400, 01328 Dresden, Germany.

Ludwig-Maximilians-Universität München, Am Coulombwall 1, 85748 Garching, Germany.

出版信息

Rev Sci Instrum. 2018 Sep;89(9):093303. doi: 10.1063/1.5041755.

Abstract

We revise the calibration of scintillating screens commonly used to detect relativistic electron beams with low average current, e.g., from laser-plasma accelerators, based on new and expanded measurements that include higher charge density and different types of screens than previous work [Buck , Rev. Sci. Instrum. , 033301 (2010)]. Electron peak charge densities up to 10 nC/mm were provided by focused picosecond-long electron beams delivered by the Electron Linac for beams with high Brilliance and low Emittance (ELBE) at the Helmholtz-Zentrum Dresden-Rossendorf. At low charge densities, a linear scintillation response was found, followed by the onset of saturation in the range of nC/mm. The absolute calibration factor (photons/sr/pC) in this linear regime was measured to be almost a factor of 2 lower than that reported by Buck retrospectively implying a higher charge in the charge measurements performed with the former calibration. A good agreement was found with the results provided by Glinec [Rev. Sci. Instrum. , 103301 (2006)]. Furthermore long-term irradiation tests with an integrated dose of approximately 50 nC/mm indicate a significant decrease of the scintillation efficiency over time. Finally, in order to enable the transfer of the absolute calibration between laboratories, a new constant reference light source has been developed.

摘要

我们基于新的、扩展的测量结果,对常用于检测低平均电流相对论电子束(例如来自激光等离子体加速器的电子束)的闪烁屏校准进行了修订。此次测量涵盖了比以往工作[Buck, Rev. Sci. Instrum., 033301 (2010)]更高的电荷密度和不同类型的屏幕。位于德累斯顿 - 罗森多夫亥姆霍兹中心的高亮度低发射度电子直线加速器(ELBE)提供了聚焦的皮秒级电子束,其电子峰值电荷密度高达10 nC/mm。在低电荷密度下,发现闪烁响应呈线性,随后在nC/mm范围内开始出现饱和。在这个线性区域内,测得的绝对校准因子(光子/球面度/皮库)比Buck回顾性报告的值低近2倍,这意味着使用先前校准进行电荷测量时电荷值更高。与Glinec [Rev. Sci. Instrum., 103301 (2006)]提供的结果取得了良好的一致性。此外,综合剂量约为50 nC/mm的长期辐照测试表明,闪烁效率会随时间显著降低。最后,为了实现不同实验室之间绝对校准的传递,开发了一种新的恒定参考光源。

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