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
Helmholtz-Zentrum Dresden-Rossendorf, Bautzner Landstraße 400, 01328 Dresden, Germany.
Ludwig-Maximilians-Universität München, Am Coulombwall 1, 85748 Garching, Germany.
Rev Sci Instrum. 2018 Sep;89(9):093303. doi: 10.1063/1.5041755.
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.
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。