论文标题
实验在探测暗物质 - 核子相互作用的非相关性有效理论时的互补性
Complementarity of experiments in probing the non-relativistic effective theory of dark matter-nucleon interactions
论文作者
论文摘要
暗物质 - 核子相互作用的非相关性有效理论取决于深色物质旋转的28个耦合强度。由于有效理论的庞大参数空间,大多数搜索暗物质的实验都可以解释结果,假设只有一种耦合强度是非零的。另一方面,暗物质模型通常以非相关性极限引导到几个相互作用的相互作用,因此,已发布的限制不能直接应用于模型预测。我们提出了一种确定对暗物质 - 核子相互作用强度的严格上限的方法,包括操作员之间所有可能的干扰。我们说明了从Xenon1t,Pico-60和IceCube产生的无效搜索强度独立上限的模型上限的方法。对于某些相互作用,耦合强度的极限被多个数量级放松。我们还提出了一种方法,该方法允许结合不同实验的结果,从而利用不同目标之间的协同作用,以探索暗物质 - 核子相互作用的参数空间。
The non-relativistic effective theory of dark matter-nucleon interactions depends on 28 coupling strengths for dark matter spin up to 1/2. Due to the vast parameter space of the effective theory, most experiments searching for dark matter interpret the results assuming that only one of the coupling strengths is non-zero. On the other hand, dark matter models generically lead in the non-relativistic limit to several interactions which interfere with one another, therefore the published limits cannot be straightforwardly applied to model predictions. We present a method to determine a rigorous upper limit on the dark matter-nucleon interaction strength including all possible interferences among operators. We illustrate the method to derive model independent upper limits on the interaction strengths from the null search results from XENON1T, PICO-60 and IceCube. For some interactions, the limits on the coupling strengths are relaxed by more than one order of magnitude. We also present a method that allows to combine the results from different experiments, thus exploiting the synergy between different targets in exploring the parameter space of dark matter-nucleon interactions.