论文标题

密封液体氙时间投影室的开发和性能

Development and Performance of a Sealed Liquid Xenon Time Projection Chamber

论文作者

Wei, Yuehuan, Long, Jianyu, Lombardi, Francesco, Jiang, Zhiheng, Ye, Jingqiang, Ni, Kaixuan

论文摘要

液体氙(LXE)时间投影室(TPC)技术正在探测从子GEV到几个TEV的广泛的暗物质质量。为了进一步提高其对亚GEV暗物质的敏感性及其在反应堆中微子中的应用,通过相干中微子核散射(CEVN)在反应堆中微子监测中,需要对单个/几个电子背景速率进行更多了解和抑制。在这里,我们报告了密封的LXETPC的设计和性能,并用石墨烯涂层的熔融二氧化硅窗口作为阴极。密封TPC的目的是将液体氙靶体积与检测器容器中的大多数隔热材料分离,从而提高液体氙气纯化效率并降低杂质引起的单/少数电子背景。我们使用密封的TPC的数据以简单的纯化模型研究了耗时率和纯化效率。从LXE中的杂质的光电离发中获得了单个电子信号,并研究了其与LXE纯度的相关性。将石墨烯涂层电极上的光电发射速率与不锈钢(通常用于LXE检测器中的电极材料)进行了比较。我们讨论了密封的TPC在下一代液体氙气实验中可能进一步改进和潜在应用,用于暗物质和中微子物理。

The liquid xenon (LXe) time projection chamber (TPC) technology is probing a wide range of dark matter masses from sub-GeV to a few TeV. To further improve its sensitivity to sub-GeV dark matter and its application in reactor neutrino monitoring via coherent elastic neutrino-nucleus scattering (CEvNS), more understanding and suppression of single/few electrons background rate are needed. Here we report on the design and performance of a sealed LXeTPC with a graphene-coated fused silica window as the cathode. The purpose of the sealed TPC is for isolating the liquid xenon target volume from the majority of out-gassing materials in the detector vessel, thus improving the liquid xenon purification efficiency and reducing the impurity-induced single/few electrons background. We investigated the out-gassing rate and purification efficiency using the data from the sealed TPC with a simple purification model. The single electron signals from the photoionization of impurities in LXe are obtained and their correlation with the LXe purity is investigated. The photo-electron emission rate on the graphene-coated electrode is compared to that from stainless steel, the electrode material typically used in LXe detectors. We discuss the possible further improvement and potential applications of the sealed TPC for the next generation liquid xenon experiments for dark matter and neutrino physics.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源