论文标题
相对论喷气机中磁重新连接的辐射和极化特征 - i。系统研究
Radiation and Polarization Signatures from Magnetic Reconnection in Relativistic Jets--I. A Systematic Study
论文作者
论文摘要
Blazars是相对论的磁化等离子体流出的超级质量黑洞,这一点非常接近我们的视线。在整个电磁频谱中,它们的发射是非热的,并且高度可变。相对论的磁重新连接已被提议作为大耀斑期间粒子加速的驱动力。虽然最近的粒子中模拟自我一致地研究了其中的磁重新连接和粒子加速度的演变,但尚未系统地探索所得的辐射特征。特别是,尚未仔细研究在重新连接过程中直接反映特征强大动态磁场演变的极化特征。在本文中,我们介绍了基于与各种物理参数的联合PIC和极化辐射传递模拟基于磁性重新连接引起的辐射和极化特征的系统研究。我们确定光谱演化中的末期趋势时较难的趋势。此外,高频带倾向于比同步子光谱分量中的低频波段早起。最重要的是,偏振签名在较高频率的情况下看起来更可变。我们发现时间极化的变化很大程度上取决于指南强度。具体而言,具有显着的指导场分量的重新连接导致极高的极化度与典型的Blazar观测相矛盾,而较大的极化角旋转是几乎反行平行的磁场线之间磁重新连接的独特签名。这些旋转至少为$ 90^o $,并且可以扩展到$> 180^o $,并且它们可能会在两个方向上旋转。这些结果表明,在本质上显示出较大的极化角旋转的大麻具有更多的抗平行磁场形态。
Blazars are relativistic magnetized plasma outflows from supermassive black holes that point very close to our line of sight. Their emission is nonthermal dominated and highly variable across the entire electromagnetic spectrum. Relativistic magnetic reconnection has been proposed as the driver of particle acceleration during blazar flares. While recent particle-in-cell simulations have self-consistently studied the evolution of magnetic reconnection and particle acceleration therein, the resulting radiation signatures have not been systematically explored. In particular, the polarization signatures, which directly reflect the characteristic strongly dynamical magnetic field evolution during reconnection, have not been carefully investigated. In this paper, we present a systematic study of radiation and polarization signatures arising from magnetic reconnection in blazars, based on combined PIC and polarized radiation transfer simulations with various physical parameters. We identify a harder-when-brighter trend in the spectral evolution. Moreover, higher-frequency bands tend to flare earlier than lower-frequency bands in the synchrotron spectral component. Most importantly, polarization signatures appear more variable with higher frequencies. We find that the temporal polarization variations strongly depends on the guide field strength. Specifically, reconnection with significant guide field component leads to very high polarization degree that contradict to typical blazar observations, while large polarization angle rotations are unique signatures of magnetic reconnection between nearly anti-parallel magnetic field lines. These rotations are at least $90^o$ and can extend to $>180^o$, and they may rotate in both directions. These results imply that blazars that have shown large polarization angle rotations intrinsically have more nearly anti-parallel magnetic field morphology.