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首页> 外文期刊>The Astrophysical journal >THE NANOGRAV NINE-YEAR DATA SET: NOISE BUDGET FOR PULSAR ARRIVAL TIMES ON INTRADAY TIMESCALES
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THE NANOGRAV NINE-YEAR DATA SET: NOISE BUDGET FOR PULSAR ARRIVAL TIMES ON INTRADAY TIMESCALES

机译:纳诺格拉夫9年数据集:日间时间表上脉冲到达时间的噪声预算

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摘要

The use of pulsars as astrophysical clocks for gravitational wave (GW) experiments demands the highest possible timing precision. Pulse times of arrival (TOAs) are limited by stochastic processes that occur in the pulsar itself, along the line of sight through the interstellar medium, and in the measurement process. On timescales of seconds to hours, the TOA variance exceeds that from template-fitting errors due to additive noise. We assess contributions to the total variance from two additional effects: amplitude and phase jitter intrinsic to single pulses and changes in the interstellar impulse response from scattering. The three effects have different dependencies on time, frequency, and pulse signal-to-noise ratio. We use data on 37 pulsars from the North American Nanohertz Observatory for GWs to assess the individual contributions to the overall intraday noise budget for each pulsar. We detect jitter in 22 pulsars and estimate the average value of rms jitter in our pulsars to be of pulse phase. We examine how jitter evolves as a function of frequency and find evidence for evolution. Finally, we compare our measurements with previous noise parameter estimates and discuss methods to improve GW detection pipelines.
机译:使用脉冲星作为重力波(GW)实验的天体时钟需要尽可能高的计时精度。脉冲到达时间(TOA)受脉冲星本身,沿着穿过星际介质的视线以及在测量过程中发生的随机过程限制。在几秒到几小时的时间尺度上,TOA方差超过了由于附加噪声导致的模板拟合误差。我们通过两个附加影响评估对总方差的贡献:两个是单个脉冲固有的幅度和相位抖动,以及来自散射的星际脉冲响应的变化。这三种效应对时间,频率和脉冲信噪比的依赖性不同。我们使用了来自北美纳赫兹天文台的GW脉冲星的37个数据,来评估每个脉冲星对整体日内噪声预算的贡献。我们在22个脉冲星中检测到抖动,并估计脉冲星中均方根抖动的平均值为脉冲相位。我们研究了抖动如何随频率变化而变化,并找到了变化的证据。最后,我们将测量值与先前的噪声参数估计值进行比较,并讨论改善GW检测管道的方法。
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