论文标题

限制局部快速无线电爆发的中子星级合并起源

Constraining a neutron star merger origin for localized fast radio bursts

论文作者

Gourdji, Kelly, Rowlinson, Antonia, Wijers, Ralph A. M. J., Goldstein, Adam

论文摘要

快速无线电爆发(FRB)的祖细胞是什么,以及是否有多种类型的祖细胞是空的问题。带有主机星系红移的局部FRB的出现使得各种发射模型可以首次直接测试。鉴于两个非重复FRB的局部定位(FRB 180924和FRB 190523),我们讨论了FRB发射模型的选择,并演示了我们如何在关键模型参数上构成约束,例如磁场强度和推定的FRB发射中子星的磁场强度和年龄。特别是,我们专注于与紧凑型二进制合并事件有关的模型,这些模型至少涉及一个中子星,这是由FRB的宿主星系与此类合并事件的主机/短伽马射线爆发(SGRBS)之间的共同点进行的。我们排除了在合并二元系统的最后一个灵感阶段生产的FRB的可能性。在可能的情况下,我们可以预测与给定模型相关的电磁发射的光曲线,并使用它推荐多波长的随访策略,这些策略可能有助于确认或排除未来FRB的模型。此外,我们在Fermi Gamma-ray爆发监视器数据中针对与FRB相关的潜在SGRB候选者进行了有针对性的子阈值搜索,并显示了相关模型的非检测含义。这项研究中提出的方法可以轻松地应用于未来的局部FRB上,并适用于可能是核心偏离超新星祖细胞的来源,以帮助限制整个FRB种群的潜在模型。

What the progenitors of fast radio bursts (FRBs) are, and whether there are multiple types of progenitors are open questions. The advent of localized FRBs with host galaxy redshifts allows the various emission models to be directly tested for the first time. Given the recent localizations of two non-repeating FRBs (FRB 180924 and FRB 190523), we discuss a selection of FRB emission models and demonstrate how we can place constraints on key model parameters like the magnetic field strength and age of the putative FRB-emitting neutron star. In particular, we focus on models related to compact binary merger events involving at least one neutron star, motivated by commonalities between the host galaxies of the FRBs and the hosts of such merger events/short gamma-ray bursts (SGRBs). We rule out the possibility that either FRB was produced during the final inspiral stage of a merging binary system. Where possible, we predict the light curve of electromagnetic emission associated with a given model and use it to recommend multi-wavelength follow-up strategies that may help confirm or rule out models for future FRBs. In addition, we conduct a targeted sub-threshold search in Fermi Gamma-ray Burst Monitor data for potential SGRB candidates associated with either FRB, and show what a non-detection means for relevant models. The methodology presented in this study may be easily applied to future localized FRBs, and adapted to sources with possibly core-collapse supernova progenitors, to help constrain potential models for the FRB population at large.

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