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The noise properties of 42 millisecond pulsars from the European Pulsar Timing Array and their impact on gravitational-wave searches

机译:欧洲脉冲星定时阵列的42毫秒脉冲星的噪声特性及其对重力波搜索的影响

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摘要

The sensitivity of Pulsar Timing Arrays to gravitational waves (GWs) depends on the noise present in the individual pulsar timing data. Noise may be either intrinsic or extrinsic to the pulsar. Intrinsic sources of noise will include rotational instabilities, for example. Extrinsic sources of noise include contributions from physical processes which are not sufficiently well modelled, for example, dispersion and scattering effects, analysis errors and instrumental instabilities. We present the results from a noise analysis for 42 millisecond pulsars (MSPs) observed with the European Pulsar Timing Array. For characterizing the low-frequency, stochastic and achromatic noise component, or `timing noise', we employ two methods, based on Bayesian and frequentist statistics. For 25 MSPs, we achieve statistically significant measurements of their timing noise parameters and find that the two methods give consistent results. For the remaining 17 MSPs, we place upper limits on the timing noise amplitude at the 95 per cent confidence level. We additionally place an upper limit on the contribution to the pulsar noise budget from errors in the reference terrestrial time standards (below 1 per cent), and we find evidence for a noise component which is present only in the data of one of the four used telescopes. Finally, we estimate that the timing noise of individual pulsars reduces the sensitivity of this data set to an isotropic, stochastic GW background by a factor of >9.1 and by a factor of >2.3 for continuous GWs from resolvable, inspiralling supermassive black hole binaries with circular orbits.
机译:脉冲星定时阵列对重力波(GWs)的敏感性取决于各个脉冲星定时数据中存在的噪声。脉冲星可能是固有噪声也可能是固有噪声。固有的噪声源将包括例如旋转不稳定性。外部噪声源包括未充分建模的物理过程的贡献,例如,色散和散射效应,分析误差和仪器的不稳定性。我们介绍了使用欧洲脉冲星定时阵列观察到的42毫秒脉冲星(MSP)的噪声分析结果。为了表征低频,随机和消色差噪声分量或“定时噪声”,我们采用了基于贝叶斯统计和频率统计的两种方法。对于25个MSP,我们对其时序噪声参数进行了统计上显着的测量,发现这两种方法给出了一致的结果。对于其余的17个MSP,我们将时序噪声幅度的上限设置为置信度为95%。我们还对参考地面时间标准中的误差对脉冲星噪声预算的贡献设定了上限(低于1%),并且我们找到了仅在所使用的四个中之一的数据中存在的噪声成分的证据。望远镜。最后,我们估计单个脉冲星的定时噪声会降低该数据集对各向同性,随机GW背景的敏感性,对于连续GW而言,可分辨,令人鼓舞的超大质量黑洞双星与圆形轨道。

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