论文标题
基于MPGD的单光子检测器的纳米座光(纳米)光(未来EIC)
Nanodiamond photocathodes for MPGD-based single photon detectors at future EIC
论文作者
论文摘要
我们正在为未来电子离子对撞机的实验中开发用于Cherenkov成像应用的气体光子检测器。到目前为止,CSI在远离紫外线范围内转换光子是唯一与气体探测器操作兼容的光电逆变器。由于其吸湿性,要处理的是非常精致的:吸收的水蒸气分解了CSI分子。此外,其量子效率在离子轰击下降低了。这些是寻求新颖的,较少细腻的光(光电降压材料)的关键原因,足以适合气态光子探测器。最近已经提出了氢化纳米座颗粒层的替代材料,并显示出有希望的特征。我们正在进行的R \&d的对象是耦合到基于GEM的探测器的纳米座光丝的性能。这些研究的第一阶段包括对覆盖有纳米原子层涂层的厚宝石的表征以及其光转移特性相对于气体检测器中乘法过程的离子轰击的稳健性。在这些探索性研究中,该方法详细描述了迄今为止获得的所有结果。
We are developing gaseous photon detectors for Cherenkov imaging applications in the experiments at the future Electron Ion Collider. CsI, converting photons in the far ultraviolet range, is, so far, the only photoconverter compatible with the operation of gaseous detectors. It is very delicate to handle due to its hygroscopic nature: the absorbed water vapour decomposes the CsI molecule. In addition, its quantum efficiency degrades under ion bombardment. These are the key reasons to quest for novel, less delicate materials for photocathodes adequate for gaseous photon detectors. Layers of hydrogenated nanodiamond particles have recently been proposed as an alternative material and have shown promising characteristics. The performance of nanodiamond photocathodes coupled to thick GEM-based detectors is the object of our ongoing R\&D. The first phase of these studies includes the characterization of thick GEM coated with nanodiamond layers and the robustness of its photoconverting properties with respect to the bombardment by ions from the multiplication process in the gaseous detector. The approach is described in detail as well as all the results obtained so far within these exploratory studies.