论文标题

脉冲星磁层中浆体形成引起的脉冲内变异性

Intra-pulse variability induced by plasmoid formation in pulsar magnetospheres

论文作者

Andaç, I. Ceyhun, Cerutti, Benoît, Dubus, Guillaume, Ekşi, K. Yavuz

论文摘要

脉冲星在其脉冲无线电发射中表现出不规则性,这些发射源于传播效应和来源的内在活性。在这项工作中,我们研究了磁重连接起作用的作用,以及脉冲星风电流板中浆液的形成,是在不连贯,高能发射模式中内在的脉冲到脉冲变异性的可能来源。我们使用了限制于垂直于恒星旋转轴的平面的正交脉冲星磁层的二维粒子模拟。我们在几十个脉冲星时期进化了溶液,以收集具有统计学意义的合成脉冲曲线样本。浆液的形成导致以多个短,明亮的子杆的形式出现强脉冲到脉冲的变异性,这些变异性仅出现在每个主脉冲的前缘。这些发射的次级峰主要由十几个可以长到宏观尺度生长的浆液。它们从沿风电流层发生的分层合并过程的高端出现。子泵的通量与它们的宽度相关。尽管全尺度分离是不现实的,但我们认为模拟正确捕获了最大浆液的人口统计学和特性,因此可以正确地捕获最明亮的子之前的人口统计学和特性。在特定的脉冲阶段的子杆的预测提供了对磁重新连接方案的新观察测试,作为脉冲不连贯发射的起源。在光范围内对螃蟹脉冲星的高度分辨率观察可能是为此目的目标的最有希望的来源。

Pulsars show irregularities in their pulsed radio emission that originate from propagation effects and the intrinsic activity of the source. In this work, we investigate the role played by magnetic reconnection and the formation of plasmoids in the pulsar wind current sheet as a possible source of intrinsic pulse-to-pulse variability in the incoherent, high-energy emission pattern. We used a two-dimensional particle-in-cell simulation of an orthogonal pulsar magnetosphere restricted to the plane perpendicular to the star spin axis. We evolved the solution for several tens of pulsar periods to gather a statistically significant sample of synthetic pulse profiles. The formation of plasmoids leads to strong pulse-to-pulse variability in the form of multiple short, bright subpulses, which appear only on the leading edge of each main pulse. These secondary peaks of emission are dominated by the dozen plasmoids that can grow up to macroscopic scales. They emerge from the high end of the hierarchical merging process occurring along the wind current layer. The flux of the subpulses is correlated with their width in phase. Although the full-scale separation is not realistic, we argue that the simulation correctly captures the demographics and the properties of the largest plasmoids, and therefore of the brightest subpulses. The prediction of subpulses at specific pulse phases provides a new observational test of the magnetic reconnection scenario as the origin of the pulsed incoherent emission. High-time-resolution observations of the Crab pulsar in the optical range may be the most promising source to target for this purpose.

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