论文标题
Xenon1t异常的隐藏光子暗物质解释的低尺度弦乐理论基准
Low Scale String Theory Benchmarks for Hidden Photon Dark Matter Interpretations of the XENON1T Anomaly
论文作者
论文摘要
最近在Xenon1t检测器中观察到了超过已知背景的低能电子后坐力事件,与预期的$ 285 $事件相比,与预期的$ 232 \ pm 15 $的事件相比,从背景拟合到能量范围1-7 KEV的数据中的数据。这可能是由于意外的tri症成分的β衰变,或者可能是由于新物理学的。一个合理的新物理学解释是超量的吸收,质量约为$ 2.8 $ kev和大约$ 10^{ - 15} $的隐藏光子暗物质遗物,这也可以解释水平分支(HB)恒星中的冷却过量。这样的小规模玻色子质量和耦合自然可以由IIB型低规模弦理论引起。我们根据最小的低量表类型-IIB字符串理论参数空间提供了Xenon1T过量的拟合度,并提供了一些基准点,这些基准点可为数据提供良好的拟合度。还证明了如何在相交的d-brane模型中获得所需的无质谱的所需转换特性。
An excess of low-energy electronic recoil events over known backgrounds was recently observed in the XENON1T detector, where $285$ events are observed compared to an expected $232 \pm 15$ events from the background-only fit to the data in the energy range 1-7 keV. This could be due to the beta decay of an unexpected tritium component, or possibly to new physics. One plausible new physics explanation for the excess is absorption of hidden photon dark matter relics with mass around $2.8$ keV and kinetic mixing of about $10^{-15}$, which can also explain cooling excesses in horizontal-branch (HB) stars. Such small gauge boson masses and couplings can naturally arise from type-IIB low scale string theory. We provide a fit of the XENON1T excess in terms of a minimal low scale type-IIB string theory parameter space and present some benchmark points which provide a good fit to the data. It is also demonstrated how the required transformation properties of the massless spectrum are obtained in intersecting D-brane models.