论文标题

$α$ - 事实表征和拒绝在点接触HPGE检测器中

$α$-event Characterization and Rejection in Point-Contact HPGe Detectors

论文作者

The MAJORANA Collaboration, Arnquist, I. J., Avignone III, F. T., Barabash, A. S., Barton, C. J., Bertrand, F. E., Blalock, E., Bos, B., Busch, M., Buuck, M., Caldwell, T. S., Chan, Y-D., Christofferson, C. D., Chu, P. -H., Clark, M. L., Cuesta, C., Detwiler, J. A., Drobizhev, A., Edwards, T. R., Edwins, D. W., Efremenko, Yu., Elliott, S. R., Gilliss, T., Giovanetti, G. K., Green, M. P., Gruszko, J., Guinn, I. S., Guiseppe, V. E., Haufe, C. R., Hegedus, R. J., Henning, R., Aguilar, D. Hervas, Hoppe, E. W., Hostiuc, A., Kim, I., Kouzes, R. T., Lopez, A. M., López-Castaño, J. M., Martin, E. L., Martin, R. D., Massarczyk, R., Meijer, S. J., Mertens, S., Myslik, J., Oli, T. K., Othman, G., Pettus, W., Poon, A. W. P., Radford, D. C., Rager, J., Reine, A. L., Rielage, K., Ruof, N. W., Saykı, B., Schönert, S., Stortini, M. J., Tedeschi, D., Varner, R. L., Vasilyev, S., Wilkerson, J. F., Willers, M., Wiseman, C., Xu, W., Yu, C. -H., Zhu, B. X.

论文摘要

P型点触点(PPC)HPGE探测器是罕见事件搜索的领先技术,因为它们出色的能量分辨率,低阈值和多站点事件拒绝功能。我们已经表征了PPC检测器对敏感钝化和p+表面上的$α$颗粒的反应,这是以前较糟糕的背景来源。所研究的探测器与Majorana示威者实验中的检测器相同,该探测器在$^{76} $ ge中寻找中微子双β衰减($0νββ$)。 $α$在大多数被钝化的表面上衰减,由于电荷诱捕而显示出明显的能量损失,波形表现出延迟电荷回收率(DCR)签名,这是由于较慢的一小部分被困电荷引起的。发现DCR与$α$识别的现有方法相辅相成,可靠地识别检测器钝化表面上的$α$背景事件。我们证明了所有表面$α$事件的有效排斥(在统计不确定性内),仅通过将DCR鉴别器与以前使用的方法相结合,仅损失了0.2%的批量事件。 DCR判别器已用于通过Majorana示威者的数量级来降低$0νβ$感兴趣区域中的背景速率,并将用于即将到来的Legend-200-200实验。

P-type point contact (PPC) HPGe detectors are a leading technology for rare event searches due to their excellent energy resolution, low thresholds, and multi-site event rejection capabilities. We have characterized a PPC detector's response to $α$ particles incident on the sensitive passivated and p+ surfaces, a previously poorly-understood source of background. The detector studied is identical to those in the MAJORANA DEMONSTRATOR experiment, a search for neutrinoless double-beta decay ($0νββ$) in $^{76}$Ge. $α$ decays on most of the passivated surface exhibit significant energy loss due to charge trapping, with waveforms exhibiting a delayed charge recovery (DCR) signature caused by the slow collection of a fraction of the trapped charge. The DCR is found to be complementary to existing methods of $α$ identification, reliably identifying $α$ background events on the passivated surface of the detector. We demonstrate effective rejection of all surface $α$ events (to within statistical uncertainty) with a loss of only 0.2% of bulk events by combining the DCR discriminator with previously-used methods. The DCR discriminator has been used to reduce the background rate in the $0νββ$ region of interest window by an order of magnitude in the MAJORANA DEMONSTRATOR, and will be used in the upcoming LEGEND-200 experiment.

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