论文标题
Xenon1t过剩对暗物质解释的含义
Implications of the XENON1T Excess on the Dark Matter Interpretation
论文作者
论文摘要
对于最近观察到Xenon1t检测器中过度电子后坐力事件的暗物质解释似乎很具有挑战性,因为其速度不足以引起$ \ Mathcal {O}的回收电子({\ rm kev})$。快速移动或增强的暗物质情景正在引起人们的关注,这是解决此问题的一种补救措施,使暗物质解释成为解释异常的可能性。我们研究了各种情况,其中这种旋转0和1/2的暗物质通过矢量,伪量表或标量介质的交换与电子相互作用。我们发现参数值不仅可以重现多余的值,而且要与现有界限保持一致。我们的研究表明,多余的质量和耦合参数的尺度可能主要受调解人类型的影响,并且明显增强的暗物质可以根据调解人类型及其质量选择来解释过剩。这项工作中提出的方法是一般的,因此很容易适用于暗物质直接检测实验中观察到的数据的解释。
The dark matter interpretation for a recent observation of excessive electron recoil events at the XENON1T detector seems challenging because its velocity is not large enough to give rise to recoiling electrons of $\mathcal{O}({\rm keV})$. Fast-moving or boosted dark matter scenarios are receiving attention as a remedy for this issue, rendering the dark matter interpretation a possibility to explain the anomaly. We investigate various scenarios where such dark matter of spin 0 and 1/2 interacts with electrons via an exchange of vector, pseudo-scalar, or scalar mediators. We find parameter values not only to reproduce the excess but to be consistent with existing bounds. Our study suggests that the scales of mass and coupling parameters preferred by the excess can be mostly affected by the type of mediator, and that significantly boosted dark matter can explain the excess depending on the mediator type and its mass choice. The method proposed in this work is general, and hence readily applicable to the interpretation of observed data in the dark matter direct detection experiment.