论文标题

ISM磁场对GRB余辉极化的影响

Impact of the ISM magnetic field on GRB afterglow polarization

论文作者

Teboul, O., Shaviv, N.

论文摘要

线性极化已在几个GRB余气中测量。几天后,偏振是由前向冲击发射取决于后震后磁场的。后者既可以源于现有场的压缩,此处的ISM磁场以及减震器产生的不稳定性。对于短GRB,前向冲击引起的极化的先前建模将一个随机场全部或部分局限于冲击平面。但是,ISM磁场可能由随机组件和有序组件组成。在这里,我们研究具有有序和随机组件的更现实的磁场的影响。我们介绍了针对不同磁场构型产生的半分析模型和计算极化曲线。我们发现,有序成分的存在,甚至比随机的组件明显弱,具有可检测到的不同签名。在观察者平面不存在有序的组件的情况下,我们表明:i)对于射流中的观察者,极化角$θ_p$要么在所有余辉阶段保持恒定,要么表现出比90 \ textDegre的变化,要比90 \ textDegree the The TextDegree Prows the Offer the Offer of a Plartigation $ the Plearligation $ quart $ quart $ qurigation $ quart $ qurigation $ sigh plemage^飞机休息后相反。我们还发现,GRB170817的上限极化需要一个随机场不完全限制在冲击平面上,并且与有序的组件兼容,而有序的组件则是随机的一半。

Linear polarization has been measured in several GRB afterglows. After a few days, polarization arises from the forward shock emission which depends on the post-shock magnetic field. The latter can originate both from compression of existing fields, here the ISM magnetic field, and from shock generated instabilities. For short GRBs, previous modelling of the polarization arising from the forward shock considered a random field fully or partially confined to the shock plane. However, the ISM magnetic field likely consists of both random and ordered components. Here we study the impact of a more realistic magnetic field having both ordered and random components. We present our semi-analytical model and compute polarization curves arising for different magnetic field configurations. We find that the presence of an ordered component, even significantly weaker than the random one, has distinct signatures that could be detectable. In the presence of an ordered component not in the observer plane, we show that: i) for an observer inside the jet, the polarization angle $θ_p$ either remains constant during all the afterglow phase or exhibits variations smaller than the 90\textdegree swing expected from a random component solely, ii) for an observer outside the jet, the polarization angle evolves from $θ_p^{\max}$, before the jet break to its opposite after the jet break. We also find that the upper limit polarization for GRB170817 requires a random field not fully confined to the shock plane and is compatible with an ordered component as large as half the random one.

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