论文标题

标量直接检测:中等效应

Scalar Direct Detection: In-Medium Effects

论文作者

Gelmini, Graciela B., Takhistov, Volodymyr, Vitagliano, Edoardo

论文摘要

标准模型的简单扩展由标量字段组成,该标量可能构成暗物质(DM)。非常关注的是探测光$ \ MATHCAL {O}(\ Lessim 10〜 \ rm {ev})$标量DM,并具有许多基于冷凝物质系统和新材料的实验性建议。然而,先前被忽略的有效的在纵向等离子体的中等内膜混合可以强烈改变直接检测实验的原始灵敏度计算。我们使用热场理论技术实施了标量DM检测的中等效应,并表明搜索光标量的大量直接DM检测实验的覆盖率大大降低。这种发展确定了基于狄拉克材料和可调等离子体卤素的设置,这对于标量DM检测特别有希望。此外,我们还表明,相对于光环DM具有显着增强的标量,例如在太阳中产生的量子,其他颗粒或宇宙射线的衰减不会受到中等抑制的影响。因此,多吨直接DM检测实验(例如基于Xenon或Argon的)也构成了一个有利的目标。我们还讨论标量介导的DM散射。

A simple extension of the Standard Model consists of a scalar field that can potentially constitute the dark matter (DM). Significant attention has been devoted to probing light $\mathcal{O}(\lesssim 10~\rm{eV})$ scalar DM, with a multitude of experimental proposals based on condensed matter systems as well as novel materials. However, the previously overlooked effective in-medium mixing of light scalars with longitudinal plasmons can strongly modify the original sensitivity calculations of the direct detection experiments. We implement the in-medium effects for scalar DM detection, using thermal field theory techniques, and show that the reach of a large class of direct DM detection experiments searching for light scalars is significantly reduced. This development identifies setups based on Dirac materials and tunable plasma haloscopes as particularly promising for scalar DM detection. Further, we also show that scalars with significant boost with respect to halo DM, such as those produced in the Sun, decay of other particles or by cosmic rays, will not suffer from in-medium suppression. Hence, multi-tonne direct DM detection experiments, such as those based on xenon or argon, also constitute a favorable target. We also discuss scalar mediated DM scattering.

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