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Limits to PTA sensitivity: Spin stability and arrival time precision of millisecond pulsars

机译:PTA灵敏度的局限性:毫秒脉冲星的自旋稳定性和到达时间精度

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摘要

Sources of noise in pulsar timing measurements are discussed along with spin stability of neutron stars. Estimates and scaling laws are given for spin noise, timing errors from fluctuations in pulsar magnetospheres, dispersion and scattering in the interstellar plasma, and in the matched filtering technique used to estimate arrival times. The composite noise spectrum is presented and an assessment of the detectability of gravitational waves (GWs) is given in terms of the sources of error and their mitigation. The scaling laws indicate that substantial improvement in sensitivity to GWs can be expected from implementation of new, wideband spectrometers at radio observatories, by using new algorithms to further reduce the levels of plasma propagation effects, and by increasing the number of millisecond pulsars used in pulsar timing arrays.
机译:讨论了脉冲星计时测量中的噪声源以及中子星的自旋稳定性。给出了自旋噪声,脉冲星磁层起伏的时间误差,星际等离子体中的色散和散射以及用于估计到达时间的匹配滤波技术的估计和缩放定律。给出了复合噪声谱,并根据误差的来源及其缓解对重力波(GWs)的可检测性进行了评估。缩放定律表明,可以通过在无线电台实施新的宽带光谱仪,使用新算法进一步降低等离子体传播效应的水平以及通过增加脉冲星中使用的毫秒脉冲星的数量来实现对GWs灵敏度的显着提高。时序数组。

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