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Unique Multimessenger Signal of QCD Axion Dark Matter

机译:QCD轴暗物质的独特多型元件信号

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摘要

We propose a multimessenger probe of QCD axion dark matter based on observations of black hole-neutron star binary inspirals. It is suggested that a dense dark matter spike may grow around intermediate mass black holes (10(3)-10(5) M-circle dot). The presence of such a spike produces two unique effects: a distinct phase shift in the gravitational wave strain during the inspiral and an enhancement of the radio emission due to the resonant axion-photon conversion occurring in the neutron star magnetosphere throughout the inspiral and merger. Remarkably, the observation of the gravitational wave signal can be used to infer the dark matter density and, consequently, to predict the radio emission. We study the projected reach of the LISA interferometer and next-generation radio telescopes such as the Square Kilometre Array. Given a sufficiently nearby system, such observations will potentially allow for the detection of QCD axion dark matter in the mass range 10(-7) eV to 10(-5) eV.
机译:我们提出了一种基于黑洞 - 中子星二元溶质的观测的QCD轴暗暗物质的多汞探针。建议致密的暗物质尖峰可以在中间质量黑洞(10(3)-10(5)M圆点)周围生长。这种尖峰的存在产生了两个独特的效果:由于在整个天生和合并的中子星磁层中发生的共振轴光子转换,引力波应变的显着相移和无线电发射的增强。值得注意的是,引力波信号的观察可用于推断暗物质密度,并因此地预测无线电发射。我们研究了LISA干涉仪和下一代无线电望远镜(如平方公里阵列)的预计。鉴于附近的系统,这种观察可能允许检测质量范围10(-7)EV至10(-5)EV中的QCD轴暗物质。

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