论文标题

Lofar的脉冲星闪烁研究。 I.人口普查

Pulsar scintillation studies with LOFAR. I. The census

论文作者

Wu, Ziwei, Verbiest, Joris P. W., Main, Robert A., Grießmeier, Jean-Mathias, Liu, Yulan, Osłowski, Stefan, Ambalappat, Krishnakumar Moochickal, Nielsen, Ann-Sofie Bak, Künsemöller, Jörn, Donner, Julian Y., Tiburzi, Caterina, Porayko, Nataliya, Serylak, Maciej, Künkel, Lars, Brüggen, Marcus, Vocks, Christian

论文摘要

语境。脉冲星发射的星际闪烁(ISS)既可以用作离子介质(IISM)的探针,并在脉冲星时正时实验引起损坏。特别令人感兴趣的是所谓的闪烁弧,可直接用于测量时间变化的星际散射延迟,有可能允许高度改进正时精度。 目标。这项研究的主要目的是进行衍射性Pulsar闪烁和闪烁 - 在低频时可检测性的首次大量且自吻合的人口普查,作为对大规模的IISM研究和与低频阵列(Lofar)高频阵列(Lofar)高频段的较大的Iism研究和相关的传播研究的引物。 结果。在这组31个来源中,15允许全面确定闪烁属性;其中九个显示在120-180 MHz处可检测到的闪烁电弧。观察到的八个来源显示未解决的闪烁;最后八个不显示衍射闪烁。闪烁检测性与脉冲星亮度和色散度量之间的某些相关性是显而易见的,尽管无法确定明确的截止值。我们在大型分数带宽方面进行的测量可以对闪烁参数的频率缩放进行有意义的测试,这不会受到屈光闪烁变化的影响。 结论。我们的结果表明,在低频下,ISS研究的强大优势和巨大潜力以及闪烁检测性对脉冲星亮度和星际分散诸如参数的复杂依赖性。这项工作提供了大规模普查的第一部分,并在低频下对星际闪烁效应进行了长期监测。

Context. Interstellar scintillation (ISS) of pulsar emission can be used both as a probe of the ionised interstellar medium (IISM) and cause corruptions in pulsar timing experiments. Of particular interest are so-called scintillation arcs which can be used to measure time-variable interstellar scattering delays directly, potentially allowing high-precision improvements to timing precision. Aims. The primary aim of this study is to carry out the first sizeable and self-consistent census of diffractive pulsar scintillation and scintillation-arc detectability at low frequencies, as a primer for larger-scale IISM studies and pulsar-timing related propagation studies with the LOw-Frequency ARray (LOFAR) High Band Antennae (HBA). Results. In this initial set of 31 sources, 15 allow full determination of the scintillation properties; nine of these show detectable scintillation arcs at 120-180 MHz. Eight of the observed sources show unresolved scintillation; and the final eight don't display diffractive scintillation. Some correlation between scintillation detectability and pulsar brightness and dispersion measure is apparent, although no clear cut-off values can be determined. Our measurements across a large fractional bandwidth allow a meaningful test of the frequency scaling of scintillation parameters, uncorrupted by influences from refractive scintillation variations. Conclusions. Our results indicate the powerful advantage and great potential of ISS studies at low frequencies and the complex dependence of scintillation detectability on parameters like pulsar brightness and interstellar dispersion. This work provides the first installment of a larger-scale census and longer-term monitoring of interstellar scintillation effects at low frequencies.

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