重复快速射电暴 FRB 20201124A 的突然偏振角跃迁

J. R. Niu, W. Y. Wang, J. C. Jiang, Y. Qu, D. J. Zhou, W. W. Zhu, K. J. Lee, J. L. Han, B. Zhang, D. Li, S. Cao, Z. Y. Fang, Y. Feng, Q. Y. Fu, P. Jiang, W. C. Jing, J. Li, Y. Li, R. Luo, L. Q. Meng, C. C. Miao, X. L. Miao, C. H. Niu, Y. C. Pan, B. J. Wang, F. Y. Wang, H. Z. Wang, P. Wang, Q. Wu, Z. W. Wu, H. Xu, J. W. Xu, L. Xu, M. Y. Xue, Y. P. Yang, M. Yuan, Y. L. Yue, D. Zhao, C. F. Zhang, D. D. Zhang, J. S. Zhang, S. B. Zhang, Y. K. Zhang and Y. H. Zhu
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引用次数: 0

摘要

我们报告了从快速射电暴(FRB)源 FRB 20201124A 首次探测到的偏振角正交跃迁现象,这种现象以前只在射电脉冲星中观测到。我们在 2000 多个脉冲串中发现了三种正交跃迁现象,它们都与脉冲星单脉冲中观测到的现象相似。我们提出,跃迁是由于两种正交发射模式的叠加造成的,只有在高度磁化的等离子体中才能产生,它们是由视线扫过旋转磁层造成的。最短的跃迁时间尺度为 1 毫秒,这表明发射模式来自比大多数脉冲星或磁星的光柱更小的区域。这一发现提供了令人信服的证据,证明FRB发射源于磁星的复杂磁层,表明FRB发射机制类似于射电脉冲星,尽管两类天体之间存在巨大的光度差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sudden Polarization Angle Jumps of the Repeating Fast Radio Burst FRB 20201124A
We report the first detection of polarization angle orthogonal jumps, a phenomenon previously only observed from radio pulsars, from a fast radio burst (FRB) source FRB 20201124A. We find three cases of orthogonal jumps in over 2000 bursts, all resembling those observed in pulsar single pulses. We propose that the jumps are due to the superposition of two orthogonal emission modes that could only be produced in a highly magnetized plasma, and they are caused by the line of sight sweeping across a rotating magnetosphere. The shortest jump timescale is of the order of 1 millisecond, which hints that the emission modes come from regions smaller than the light cylinder of most pulsars or magnetars. This discovery provides convincing evidence that FRB emission originates from the complex magnetosphere of a magnetar, suggesting an FRB emission mechanism that is analogous to radio pulsars despite a huge luminosity difference between two types of objects.
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