论文标题

相对论磁化无碰撞冲击与密集的团块的相互作用

Interaction of a Relativistic Magnetized Collisionless Shock with a Dense Clump

论文作者

Tomita, Sara, Ohira, Yutaka, Kimura, Shigeo S., Tomida, Kengo, Toma, Kenji

论文摘要

预计相对论磁化的无碰撞冲击和致密团块之间的相互作用在磁场放大和宇宙射线加速度上起着至关重要的作用。我们首次通过二维粒子(PIC)模拟研究了这一过程,其中团块的大小比下游颗粒的Gyroradius大得多。我们还为相同的条件进行了相对论的磁流失动力学(MHD)模拟,以查看动力学效应。我们发现,颗粒从PIC模拟中的磁场线沿震动的团块逸出,因此涡度低于MHD模拟中的涡度。此外,在PIC和MHD模拟中,由于相对论的影响,震惊的团块都会迅速减速。由于逃生和减速,震惊的团块无法在相对论无碰撞冲击中放大下游磁场。这个大规模的PIC模拟为了解无碰撞等离子体系统中的大规模行为打开了一个新窗口。

The interactions between a relativistic magnetized collisionless shock and dense clumps have been expected to play a crucial role on the magnetic field amplification and cosmic-ray acceleration. We investigate this process by two-dimensional Particle-In-Cell (PIC) simulations for the first time, where the clump size is much larger than the gyroradius of downstream particles. We also perform relativistic magnetohydrodynamic (MHD) simulations for the same condition to see the kinetic effects. We find that particles escape from the shocked clump along magnetic field lines in the PIC simulations, so that the vorticity is lower than that in the MHD simulations. Moreover, in both the PIC and MHD simulations, the shocked clump quickly decelerates because of relativistic effects. Owing to the escape and the deceleration, the shocked clump cannot amplify the downstream magnetic field in relativistic collisionless shocks. This large-scale PIC simulation opens a new window to understand large-scale behaviors in collisionless plasma systems.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源