论文标题

没有隐藏的空间:宇宙射线对GEV尺度暗物质的影响

No room to hide: implications of cosmic-ray upscattering for GeV-scale dark matter

论文作者

Alvey, James, Bringmann, Torsten, Kolesova, Helena

论文摘要

宇宙射线对冷暗物质的不可检查的上散射打开了在传统的直接检测实验或地下中微子检测器中检测到轻暗物质的有趣可能性。该机制还显着提高了对具有非常大的核散射速率的模型的敏感性,在这些模型中,大气和岩石覆盖层有效地停止了标准的非相关暗物质颗粒,然后才能到达检测器。在本文中,我们证明了宇宙射线上散射基本上关闭了在(子)GEV质量范围内强烈相互作用的暗物质的窗口。得出这个结论至关重要的是,需要对核形态和非弹性暗物质核散射进行详细处理,并包括散射幅度的全部动量转移依赖性。我们通过考虑三种通用情况来说明后一个点,在这种情况下,这种动量依赖性特别相关,即分别与由光矢量或标量介体的交换所主导的相互作用,以及有限大小的暗物质粒子所主导的相互作用。作为最后一个具体的例子,我们将分析应用于推定的六夸克州,该州被认为是可行的重型型暗物质候选者。再次,我们发现该作品中得出的更新的约束结束了原本不受约束的参数空间的重要部分。

The irreducible upscattering of cold dark matter by cosmic rays opens up the intriguing possibility of detecting even light dark matter in conventional direct detection experiments or underground neutrino detectors. The mechanism also significantly enhances sensitivity to models with very large nuclear scattering rates, where the atmosphere and rock overburden efficiently stop standard non-relativistic dark matter particles before they could reach the detector. In this article, we demonstrate that cosmic-ray upscattering essentially closes the window for strongly interacting dark matter in the (sub-)GeV mass range. Arriving at this conclusion crucially requires a detailed treatment of both nuclear form factors and inelastic dark matter-nucleus scattering, as well as including the full momentum-transfer dependence of scattering amplitudes. We illustrate the latter point by considering three generic situations where such a momentum-dependence is particularly relevant, namely for interactions dominated by the exchange of light vector or scalar mediators, respectively, and for dark matter particles of finite size. As a final concrete example, we apply our analysis to a putative hexaquark state, which has been suggested as a viable baryonic dark matter candidate. Once again, we find that the updated constraints derived in this work close a significant part of otherwise unconstrained parameter space.

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