论文标题
磁通量密度的变化为286个无线电脉冲星,从十年监测
Flux density variability of 286 radio pulsars from a decade of monitoring
论文作者
论文摘要
自2007年以来,Parkes望远镜大约每月以1.4 GHz的频率监测286个无线电脉冲星。 PULSAR样品的广泛分散度度量(DM)范围和观察过程的均匀性使数据集对通量密度可变性和星际培养基的研究非常有价值。在这里,我们介绍了这些脉冲星的通量密度测量和调制指数。我们从光曲线得出结构函数,并从测量噪声,内在可变性和星际闪烁中讨论对其的贡献。尽管散布很大,但我们表明调制索引与DM成反相关,并且通常可以由$ \ sim-0.7 $的PowerLaw描述,从$ \ sim10 $到1000 cm $^{ - 3} $ pc,覆盖DMS的索引。我们提出了一组42个脉冲星的屈光时标和/或下限。这些通常具有与理论期望明显不同的值,表明沿单个视线的星际介质的复杂性质。特别是,局部结构和非kolmogorov密度波动可能在观察到的许多脉冲星的通量密度变化中起重要作用。
The Parkes telescope has been monitoring 286 radio pulsars approximately monthly since 2007 at an observing frequency of 1.4 GHz. The wide dispersion measure (DM) range of the pulsar sample and the uniformity of the observing procedure make the data-set extremely valuable for studies of flux density variability and the interstellar medium. Here, we present flux density measurements and modulation indices of these pulsars over this period. We derive the structure function from the light curves and discuss the contributions to it from measurement noise, intrinsic variability and interstellar scintillation. Despite a large scatter, we show that the modulation index is inversely correlated with DM, and can be generally described by a power-law with an index of $\sim-0.7$ covering DMs from $\sim10$ to 1000 cm$^{-3}$ pc. We present refractive timescales and/or lower limits for a group of 42 pulsars. These often have values significantly different from theoretical expectations, indicating the complex nature of the interstellar medium along individual lines of sight. In particular, local structures and non-Kolmogorov density fluctuations are likely playing important roles in the observed flux density variation of many of these pulsars.