论文标题

脉冲星定时阵列观测地球噪声和重力波

Geodesic Noise and Gravitational Wave Observations by Pulsar Timing Arrays

论文作者

Golat, Sebastian, Contaldi, Carlo R.

论文摘要

来自毫秒脉冲星的信号沿着沿着空间度量标准影响的视线沿线传播。沿着测量学的确切路径几何形状和红晶决定了观察到的脉冲的到达时间(TOA)。度量由星系中的暗物质,气体和恒星的分布以及在旅行的最后阶段通过太阳系主体的分布确定。恒星质量的不均匀分布可以通过地球化学的扰动对TOA产生较小但显着的统计影响。这将导致TOA观测值的额外噪声,这些噪声可能会影响非常低频率的重力波的Pulsar定时阵列(PTA)约束。我们采用了一个简单的模型,用于我们的星系中的恒星分布,以估计我们一般“地理噪声”的静态和动态源的规模。我们发现,Geodesic噪声的标准偏差为$ {\ cal O}(10)$ ns,对于典型的视线。这表明地球噪声与PTA敏感性的估计相关,并且可能会限制PTA检测重力波的未来努力。

Signals from millisecond pulsars travel to us on geodesics along the line-of-sight that are affected by the space--time metric. The exact path-geometry and redshifting along the geodesics determine the observed Time-of-Arrival (ToA) of the pulses. The metric is determined by the distribution of dark matter, gas, and stars in the galaxy and, in the final stages of travel, by the distribution of solar system bodies. The inhomogeneous distribution of stellar masses can have a small but significant statistical effect on the ToAs through the perturbation of geodesics. This will result in additional noise in ToA observations that may affect Pulsar Timing Array (PTA) constraints on gravitational waves at very low frequencies. We employ a simple model for the stellar distribution in our galaxy to estimate the scale of both static and dynamic sources of what we term generically "geodesic noise". We find that geodesic noise has a standard deviation of ${\cal O}(10)$ ns for typical lines-of-sight. This suggests geodesic noise is relevant for estimates of PTA sensitivity and may limit future efforts for detection of gravitational waves by PTAs.

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