Polarization Position Angle Swing and the Rotating Vector Model of Repeating Fast Radio Bursts

Fast radio bursts (FRBs), typically highly polarized, usually have a nearly constant polarization position angle (PA) during each burst. Some bursts show significant PA variations, and one of them was claimed to have a PA variation pattern consistent with the prediction of the rotating vector model...

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Published inThe Astrophysical journal Vol. 988; no. 2; pp. 175 - 183
Main Authors Liu, Xiaohui, Xu, Heng, Niu, Jiarui, Zhang, Yongkun, Jiang, Jinchen, Zhou, Dejiang, Han, Jinlin, Zhu, Weiwei, Lee, Kejia, Li, Di, Wang, Wei-Yang, Zhang, Bing, Chen, Xuelei, Luo, Jia-Wei, Luo, Rui, Niu, Chenhui, Qu, Yuanhong, Wang, Bojun, Wang, Fayin, Wang, Pei, Wang, Tiancong, Wu, Qin, Wu, Ziwei, Xu, Jiangwei, Yang, Yuan-Pei, Zhang, Jun-Shuo
Format Journal Article
LanguageEnglish
Published Philadelphia The American Astronomical Society 01.08.2025
IOP Publishing
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ISSN0004-637X
1538-4357
DOI10.3847/1538-4357/ade689

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Summary:Fast radio bursts (FRBs), typically highly polarized, usually have a nearly constant polarization position angle (PA) during each burst. Some bursts show significant PA variations, and one of them was claimed to have a PA variation pattern consistent with the prediction of the rotating vector model (RVM) commonly adopted to fit the PA variations in radio pulsars. We systematically study the PA evolution pattern of 1727 bursts from three active repeating FRB sources monitored by the Five-hundred-meter Aperture Spherical Radio Telescope. We identify 46 bursts whose PA variations are fully consistent with the RVM. However, the inferred geometrical parameters and rotation periods derived from these RVM fittings are inconsistent from each other. This suggests that the magnetosphere of the FRB central engine is constantly distorted by the FRB emitter and the magnetic configuration is dynamically evolving.
Bibliography:AAS64307
High-Energy Phenomena and Fundamental Physics
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ISSN:0004-637X
1538-4357
DOI:10.3847/1538-4357/ade689