论文标题

快速无线电突发的强线性极化的起源

Origin of Strong Linear Polarization from Fast Radio Bursts

论文作者

Wang, Runna, Liu, Siming, Xiong, Anda, Chen, Qi-Hui, Zhu, Fengrong

论文摘要

从快速无线电爆发源FRB 121102中检测几乎100%线性极化的发射意味着相对论电子在垂直于环境磁场的垂直时发射。这种粒子分布的起源非常有趣。鉴于FRB 121102可能是由中子恒星驱动的,因此我们探索了被困在偶极磁场中的带电颗粒的轨道(Störmer问题)。大多数以前的研究都集中在能量相对较低的颗粒上,因此可以应用引导中心近似。高能量颗粒通常具有混乱的轨道,除了周期性轨道或附近稳定的周期性轨道外。通过评估从赤道平面发射的颗粒的最大lyapunov指数,其轴向速度(角速度设置了系统的长度和能量尺度),我们发现了稳定的周期性轨道周围稳定的周期性轨道在高含量的静态平面周围的明显区域的突出区域。这些轨道中的颗粒在赤道平面周围振荡,它们与偶极子的径向距离可能会变化为/,2。这种轨道中的相对论电子可能是FRB 121102的几乎100%极化发射的原因。

The detection of almost 100% linearly polarized emission from the fast radio burst source FRB 121102 implies coherent emission of relativistic electrons moving in perpendicular to the ambient magnetic field. The origin of such a particle distribution is very intriguing. Given that FRB 121102 is likely driven by a neutron star, we explored orbits of charged particles trapped in a dipole magnetic field (the Störmer problem). Most previous studies focused on particles with relatively low energies so that the guiding center approximation may be applied. High energy particles usually have chaotic orbits except those on a periodic orbit or near stable periodic orbits. Via evaluation of the maximum Lyapunov exponent of orbits of particles launched from the equatorial plane with an axial velocity (the angular velocity sets the length and energy scales of the system), we found prominent regions of quasi-periodic orbits around stable periodic orbits in the equatorial plane at high-energies. Particles in these orbits oscillate around the equatorial plane and their radial distance from the dipole can vary by a factor of/,2. Relativistic electrons in such orbits may be responsible for the almost 100% polarized emission from FRB 121102.

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