论文标题
J1022+1001的重新访问曲线不稳定性
Revisiting profile instability of J1022+1001
论文作者
论文摘要
定时阵列中的毫秒脉冲星可以充当重力波检测的探针,并在其他几种应用中改善太阳系胚膜。但是,集成的脉冲轮廓的稳定性可以限制埃菲默里斯参数的精度,然后又限制了从其衍生的应用程序。因此,对于阵列中的脉冲星,具有稳定的集成脉冲曲线至关重要。在这里,我们提供了PSR J1022+1001中长期特征不稳定性的证据,该证据目前包含在欧洲和Parkes Pulsar定时阵列中。我们将一种新的评估方法应用于扩展的数据集,从1990年代使用的effelsberg Pulsar观察系统后端到Effelsberg射电望远镜当前PSRIX后端的数据。我们表明,脉搏形状的这种内在变化持续了多年的时间尺度。我们研究了星际介质中的系统仪器效应,例如极化校准或信号传播效应是否会导致观察到的曲线不稳定性。我们发现总变化不能由仪器和传播效应充分解释。这暗示了额外的内在效应作为变异的起源。我们最终讨论了几个可能导致观察到的行为的因素,并评论随后的含义。
Millisecond pulsars in timing arrays can act as probes for gravitational wave detection and improving the solar system ephemerides among several other applications. However, the stability of the integrated pulse profiles can limit the precision of the ephemeris parameters and in turn the applications derived from it. It is thus crucial for the pulsars in the array to have stable integrated pulse profiles. Here we present evidence for long-term profile instability in PSR J1022+1001 which is currently included in the European and Parkes pulsar timing arrays. We apply a new evaluation method to an expanded data set ranging from the Effelsberg Pulsar Observing System back-end used in the 1990s to that of data from the current PSRIX backend at the Effelsberg Radio Telescope. We show that this intrinsic variability in the pulse shape persists over time scales of years. We investigate if systematic instrumental effects like polarisation calibration or signal propagation effects in the interstellar medium causes the observed profile instability. We find that the total variation cannot be fully accounted for by instrumental and propagation effects. This suggests additional intrinsic effects as the origin for the variation. We finally discuss several factors that could lead to the observed behaviour and comment on the consequent implications.