论文标题

与流体动力尺度湍流磁场的伽玛射线爆发余辉冲击的同步振荡

Synchrotron Polarization of Gamma-Ray Burst Afterglow Shocks with Hydrodynamic-scale Turbulent Magnetic Field

论文作者

Kuwata, Asuka, Toma, Kenji, Kimura, Shigeo S., Tomita, Sara, Shimoda, Jiro

论文摘要

伽马射线爆发(GRB)的余潮是由于扩大的前向冲击而发出的,前向冲击的磁场预计将比星际场强得多,尽管该领域的起源是一个长期存在的问题。到目前为止,已经讨论了两种现场扩增机制,血浆动力学不稳定性和磁流失动力学不稳定性。这两个过程扩增的场的连贯长度尺度不同,$ 7-10 $的大小订单,偏光观测可能会区分它们。我们在流体动力尺度湍流磁场的假设下构建了前向冲击余辉极化的半分析模型。我们对各向同性湍流和零视角进行同步偏振的数值计算。我们发现,当流体共同框架中的场相干长度尺度是冲击区域厚度的顺序时,极化度为$ \ sim1〜 \%$。这种极化度范围与观察到的后期光学余波相当。我们的模型还表明,无线电极化度平均与光学偏振度相当,但在某些时间间隔内可能高于光学偏振度。极化角度显示为随机和连续变化。这些偏振特性显然与血浆动力学不稳定性不同。最近开始启动了无线电和光条带的GRB次要的极化观测,这将有助于我们限制磁场放大机制。

Afterglows of gamma-ray bursts (GRBs) are emitted from expanding forward shocks, which are expected to have magnetic field much stronger than the interstellar field, although the origin of the field is a long-standing problem. Two field amplification mechanisms, plasma kinetic instabilities and magnetohydrodynamic instabilities, have been discussed so far. The coherence length scales of the fields amplified by these two processes are different by $7-10$ orders of magnitudes, and the polarimetric observations may distinguish them. We construct a semi-analytic model of the forward shock afterglow polarization under the assumption of hydrodynamic-scale turbulent magnetic field. We perform numerical calculations of synchrotron polarization for the isotropic turbulence and the zero viewing angle. We find that the polarization degrees are $ \sim1~\%$ when the field coherence length scale in the fluid comoving frame is of the order of the thickness of the shocked regions. This range of polarization degree is comparable to that of the observed late-phase optical afterglows. Our model also shows that the radio polarization degrees are comparable to the optical ones on average but can be higher than the optical ones at some time intervals. The polarization angles are shown to vary randomly and continuously. These polarimetric properties are clearly different from the case of plasma kinetic instability. Simultaneous polarimetric observations of GRB afterglows at the radio and optical bands have recently started, which will help us constrain the magnetic field amplification mechanism.

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