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首页> 外文期刊>Physical review, D >Electron-interacting dark matter: Implications from DAMA/LIBRA-phase2 and prospects for liquid xenon detectors and NaI detectors
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Electron-interacting dark matter: Implications from DAMA/LIBRA-phase2 and prospects for liquid xenon detectors and NaI detectors

机译:电子交互暗物质:来自DAMA / LIBRA-PHESE2的意义和液体氙探测器和NAI探测器的前景

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We investigate the possibility for the direct detection of low-mass (GeV scale) weakly interacting massive particles (WIMP) dark matter in scintillation experiments. Such WIMPs are typically too light to leave appreciable nuclear recoils but may be detected via their scattering off atomic electrons. In particular, the DAMA Collaboration [R. Bernabei et al., Nucl. Phys. At. Energy 19, 307 (2018)] has recently presented strong evidence of an annual modulation in the scintillation rate observed at energies as low as 1 keV. Despite a strong enhancement in the calculated event rate at low energies, we find that an interpretation in terms of electron-interacting WIMPs cannot be consistent with existing constraints. We also demonstrate the importance of correct treatment of the atomic wave functions and show the resulting event rate is very sensitive to the low-energy performance of the detectors, meaning it is crucial that the detector uncertainties be taken into account. Finally, we demonstrate that the potential scintillation event rate can be much larger than may otherwise be expected, meaning that competitive searches can be performed for m_χ ~ GeV scale WIMPs using the conventional prompt (S1) scintillation signals. This is important given the recent and upcoming very large liquid xenon detectors.
机译:我们调查的直接检测低质量(GeV的规模)的可能性大质量弱相互作用粒子(WIMP)的闪烁实验暗物质。这样的WIMPs通常太轻离开可察觉的核反冲但可以经由他们的散射的原子中的电子进行检测。特别地,该DAMA协作[R. Bernabei等人,Nucl。物理。在。能源19,307(2018)]最近呈现在观察到的能量低至1千电子伏的闪烁速率的年度调制的有力证据。尽管在低能量计算的事件发生率有力的提升,我们发现,在电子相互作用的WIMPs方面的解释也不能与现有的约束条件。我们还演示了正确的治疗的原子波函数的重要性,并显示结果事件发生率是对探测器的低能表现非常敏感,这意味着它是至关重要的探测器不确定因素加以考虑。最后,我们证明了潜在闪烁事件速率可以比否则可以预期大得多,这意味着有竞争力的搜索可以使用常规的提示(S1)的闪烁信号m_χ〜GeV的规模的WIMPs来执行。考虑到最近和即将推出的非常大的液氙探测器这是非常重要的。

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