论文标题

将时钟比较方法应用于脉冲星的定时观测

Applying clock comparison methods to pulsar timing observations

论文作者

Chen, Siyuan, Vernotte, Francois, Rubiola, Enrico

论文摘要

频率计量学在准确性($ 10^{ - 16} $)和小波动($ <10^{ - 17} $)上优于计量学的其他分支。反过来,在天体中,毫秒脉冲星(MSP)的旋转速度是迄今为止最稳定的($ <10^{ - 18} $)。因此,预计脉冲星信号到达时间(TOA)的精确度量有望披露有关宇宙学现象的信息,并扩大了我们的天体物理知识。与该主题相关的是,在过去的几十年中,已经开发并运行了Pulsar定时阵列(PTA)项目。来自脉冲星的TOA可能会受到局部发射和环境影响的影响,在通过星际培养基传播的方向上,或普遍受到超大黑洞二进制的重力波的普遍影响。这些效果(信号)可以表现为随着时间的流逝的低频波动,在现象学上与红噪声相似。剩下的脉冲星固有和仪器背景(噪声)是白色的。本文重点介绍了脉冲星的频率计量学。从我们的角度来看,脉冲星是一个准确的时钟,可以与几个望远镜同时测量,以拒绝不相关的白噪声。我们将现代的频率计量学统计方法应用于模拟PULSAR数据,并显示了望远镜之间相关的红噪声信号的检测极限。

Frequency metrology outperforms any other branch of metrology in accuracy (parts in $10^{-16}$) and small fluctuations ($<10^{-17}$). In turn, among celestial bodies, the rotation speed of millisecond pulsars (MSP) is by far the most stable ($<10^{-18}$). Therefore, the precise measurement of the time of arrival (TOA) of pulsar signals is expected to disclose information about cosmological phenomena, and to enlarge our astrophysical knowledge. Related to this topic, Pulsar Timing Array (PTA) projects have been developed and operated for the last decades. The TOAs from a pulsar can be affected by local emission and environmental effects, in the direction of the propagation through the interstellar medium or universally by gravitational waves from super massive black hole binaries. These effects (signals) can manifest as a low-frequency fluctuation over time, phenomenologically similar to a red noise. While the remaining pulsar intrinsic and instrumental background (noise) are white. This article focuses on the frequency metrology of pulsars. From our standpoint, the pulsar is an accurate clock, to be measured simultaneously with several telescopes in order to reject the uncorrelated white noise. We apply the modern statistical methods of time-and-frequency metrology to simulated pulsar data, and we show the detection limit of the correlated red noise signal between telescopes.

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