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A dispersion excess from pulsar wind nebulae and supernova remnants: Implications for pulsars and FRBs

机译:从脉冲星风云星云和超新星残留的分散过量:对脉冲条件和FRB的影响

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Young pulsars and the pulsar wind nebulae (PWNe) or supernova remnants (SNRs) that surround them are some of the most dynamic and high-powered environments in our Universe. With the rise of more sensitive observations, the number of pulsar-SNR and PWN associations (hereafter, SNR/PWN) has increased, yet we do not understand to which extent this environment influences the pulsars’ impulsive radio signals. We studied the dispersive contribution of SNRs and PWNe on Galactic pulsars, and considered their relevance to fast radio bursts (FRBs) such as FRB 121102. We investigated the dispersion measure (DM) contribution of SNRs and PWNe by comparing the measured DMs of Galactic pulsars in a SNR/PWN to the DM expected only from the intervening interstellar electrons, using the NE2001 model. We find that a two- σ DM contribution of SNRs and PWNe to the pulsar signal exists, amounting to 21.1 ± 10.6 pc cm~(?3). The control sample of pulsars unassociated with a SNR/PWN shows no excess. We model the SNR and PWN electron densities for each young pulsar in our sample and show that these indeed predict an excess of this magnitude. By extrapolating to the kind of fast-spinning, high magnetic field, young pulsars that may power FRBs, we show their SNR and PWN are capable of significantly contributing to the observed DM.
机译:围绕它们的幼小脉冲线和脉冲脉冲星云(PWNE)或超新星残余(SNRS)是我们宇宙中最具活力和高通力的环境。随着更敏感的观测的升高,Pulsar-SNR和PWN关联的数量(以下,SNR / PWN)已经增加,但我们不明白这种环境影响脉冲星的冲动无线电信号的程度。我们研究了SNR和PWNE在银河脉冲条件上的分散贡献,并考虑了与FRB 121102的快速无线电突发(FRB)的相关性。我们通过比较半乳液脉冲条的测量DMS来研究SNR和PWNE的分散测量(DM)贡献使用NE2001模型,在仅来自介入星际电子的SNR / PWN到DM预期。我们发现,存在SNR和PWNE到脉冲条信号的两ΣDM贡献,其数量为21.1±10.6 PC cm〜(?3)。与SNR / PWN无关联的脉冲条的控制样品显示出没有过量。我们为我们样本中的每个年轻脉冲都模拟SNR和PWN电子密度,并表明这些确实预测了过多的这种幅度。通过外推到快速旋转,高磁场,可能赋予FRB的年轻脉冲线,我们展示了他们的SNR,PWN能够显着贡献观察到的DM。

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