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XENON1T Excess from Anomaly-Free Axionlike Dark Matter and Its Implications for Stellar Cooling Anomaly

机译:Xenon1t过量来自无异常的轴静脉暗物质及其对恒星冷却异常的影响

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Recently, an anomalous excess was found in the electronic recoil data collected at the XENON1T experiment. The excess may be explained by an axionlike particle (ALP) with a mass of a few keV and a coupling to electron of g(ae) similar to 10(-13), if the ALP constitutes all or some fraction of local dark matter (DM). In order to satisfy the x-ray constraint, the ALP coupling to photons must be significantly suppressed compared to that to electrons. This strongly suggests that the ALP has no anomalous couplings to photons; i.e., there is no U(1)(PQ)-U(1)(em)-U(1)(em) anomaly. We show that such anomaly-free ALP DM predicts an x-ray line signal with a definite strength through the operator arising from threshold corrections, and compare it with the projected sensitivity of the ATHENA x-ray observatory. The abundance of ALP DM can be explained by the misalignment mechanism, or by thermal production if it constitutes a part of DM. In particular, we fmd that the anomalous excess reported by the XENON1T experiment as well as the stellar cooling anomalies from white dwarfs and red giants can be explained simultaneously better when the ALP constitutes about 10% of DM. As concrete models, we revisit the leptophilic anomaly-free ALP DM considered in K. Nakayama, F. Takahashi, and T. T. Yanagida [Phys. Lett. B 734, 178 (2014)] as well as an ALP model based on a two Higgs doublet model in the Supplemental Material.
机译:最近,在Xenon1T实验中收集的电子反冲数据中发现了异常过量。如果ALP构成局部暗物质的全部或一部分,可以通过少量kev的轴状颗粒(ALP)和与局部暗物质( DM)。为了满足X射线约束,与电子相比,必须显着抑制与光子的ALP耦合。这强烈表明ALP对光子没有异常联轴器;即,没有U(1)(PQ)-U(1)(EM)-U(1)(EM)异常。我们表明,这种无常见的ALP DM通过阈值校正引发的操作员预测了具有明确强度的X射线线信号,并将其与雅典娜X射线天文台的预计灵敏度进行比较。如果它构成DM的一部分,可以通过未对准机制或通过热产量来解释ALP DM的丰度。特别是,当ALP构成DM的约10%时,我们可以将Xenon1T实验以及来自白矮星和红色巨型的恒星冷却异常报告的异常过量的FMD可以同时解释。作为具体模型,我们重新审视了在K.Nakayama,F.Takahashi和T. Yanagida [Phys。吧。 B 734,178(2014)]以及基于补充材料中的两个Higgs双峰模型的ALP模型。

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  • 来源
    《Physical review letters》 |2020年第16期|161801.1-161801.6|共6页
  • 作者单位

    Tohoku Univ Dept Phys Sendai Miyagi 9808578 Japan|Univ Tokyo UTIAS Kavli IPMU WPI Kashiwa Chiba 2778583 Japan;

    Tohoku Univ Dept Phys Sendai Miyagi 9808578 Japan|Tohoku Univ Frontier Res Inst Interdisciplinary Sci Sendai Miyagi 9808578 Japan;

    Univ Tokyo Fac Sci Dept Phys Bunkyo Ku Tokyo 1130033 Japan;

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