Axion Dark Matter Search with Interferometrie Gravitational Wave Detectors

Axion Dark Matter Search with Interferometrie Gravitational Wave Detectors
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DOI:
10.1088/1742-6596/1468/1/012027
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发表时间:
2019-03
期刊:
Journal of Physics: Conference Series
影响因子:
--
通讯作者:
K. Nagano;Tomohiro Fujita;Y. Michimura;Ippei Obata
K. Nagano;Tomohiro Fujita;Y. Michimura;Ippei Obata
中科院分区:
其他
文献类型:
--
作者:
K. Nagano;Tomohiro Fujita;Y. Michimura;Ippei Obata

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轴子暗物质对圆偏振光子的相速度进行微分。在[Phys. Rev. Lett. 123,111301(2019)],我们提出了一种通过使用线性光学腔来测量相位差的方案。如果将该方案应用于先进LIGO类的Fabry-Perot臂(类宇宙探测器)引力波探测器,对轴子-光子耦合常数g aγ的潜在灵敏度,达到g aγ 8 × 10−13 GeV−1(4 × 10−14 GeV−1),轴子质量m = 3 × 10−13 eV(2 × 10−15 eV),并在质量的3个数量级保持在这个灵敏度附近。此外,它的灵敏度在m = 1.563 × 10− 10 eV(1.563 × 10 − 11 eV)处有一个尖锐的峰值,达到g aγ <$10 −14 GeV−1(8 × 10−17 GeV−1)。这种灵敏度可以在不损失对引力波的任何灵敏度的情况下实现。
Axion dark matter differentiates the phase velocities of the circular-polarized photons. In [Phys. Rev. Lett. 123, 111301 (2019)], we have proposed a scheme to measure the phase difference by using a linear optical cavity. If the scheme is applied to the Fabry-Perot arm of Advanced LIGO-like (Cosmic-Explorer-like) gravitational wave detector, the potential sensitivity to the axion-photon coupling constant, g aγ, reaches g aγ ≃ 8 × 10−13 GeV−1 (4 × 10−14 GeV−1) at the axion mass m ≃ 3 × 10−13 eV (2 × 10−15 eV) and remains at around this sensitivity for 3 orders of magnitude in mass. Furthermore, its sensitivity has a sharp peak reaching g aγ ≃ 10−14 GeV−1 (8 × 10−17 GeV−1) at m = 1.563 × 10−10 eV (1.563 × 10−11 eV). This sensitivity can be achieved without loosing any sensitivity to gravitational waves.