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
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.