Bright bursts with sub-millisecond structures of FRB 20230607A in a highly magnetized environment

Fuente: arXiv
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Main Authors: Zhou, DeJiang, Han, J. L., Zhang, Bing, Zhu, WeiWei, Wang, Wei-yang, Yang, Yuan-Pei, Qu, Yuanhong, Zhang, Yong-Kun, Yan, Yi, Jing, Wei-Cong, Cao, Shuo, Xie, Jintao, Yang, Xuan, Tian, Shiyan, Li, Ye, Li, Dongzi, Niu, Jia-Rui, Wu, Zi-Wei, Wu, Qin, Feng, Yi, Wang, Fayin, Wang, Pei
Format: Preprint
Published: 2025
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author Zhou, DeJiang
Han, J. L.
Zhang, Bing
Zhu, WeiWei
Wang, Wei-yang
Yang, Yuan-Pei
Qu, Yuanhong
Zhang, Yong-Kun
Yan, Yi
Jing, Wei-Cong
Cao, Shuo
Xie, Jintao
Yang, Xuan
Tian, Shiyan
Li, Ye
Li, Dongzi
Niu, Jia-Rui
Wu, Zi-Wei
Wu, Qin
Feng, Yi
Wang, Fayin
Wang, Pei
author_facet Zhou, DeJiang
Han, J. L.
Zhang, Bing
Zhu, WeiWei
Wang, Wei-yang
Yang, Yuan-Pei
Qu, Yuanhong
Zhang, Yong-Kun
Yan, Yi
Jing, Wei-Cong
Cao, Shuo
Xie, Jintao
Yang, Xuan
Tian, Shiyan
Li, Ye
Li, Dongzi
Niu, Jia-Rui
Wu, Zi-Wei
Wu, Qin
Feng, Yi
Wang, Fayin
Wang, Pei
contents We report the observations of a repeating FRB 20230607A for 15.6 hours spanning 16 months using the Five-hundred-meter Aperture Spherical Radio Telescope (FAST) with the detection of 565 bursts. We present three bright bursts with detailed temporal/spectral structures. We also report that one burst carries a narrow component with a width of only 0.3 ms, which is surrounded by broader components. This suggests that repeaters can make both narrow and broad components in one burst. With the narrow spike, we precisely measure the dispersion measure (DM) of $362.85 \pm 0.15 \;{\rm pc\,cm^{-3}}$ and the Faraday rotation measures (RMs) of and $-12249.0\pm 1.5 \; {\rm rad\,m^{-2}}$. We also analyze the statistical distribution of the burst parameters, including waiting times, temporal widths, central frequencies and frequency widths, fluences and energies, all showing typical distributions of known active repeaters. In particular, most bursts show narrow spectra with $Δν/ν_0 = 0.125\pm 0.001$. This fact, together with the narrow 0.3 ms spike, strongly suggests a magnetospheric origin of the FRB emission. Based on a predicted correlation between RM and the luminosity of a persistent radio source (PRS) by Yang et al., we predict that PRS should have a specific luminosity of the order of $10^{29} \ {\rm erg \ s^{-1} \ Hz^{-1}}$ and encourage a search for such a PRS.
format Preprint
id arxiv_https___arxiv_org_abs_2504_11173
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Bright bursts with sub-millisecond structures of FRB 20230607A in a highly magnetized environment
Zhou, DeJiang
Han, J. L.
Zhang, Bing
Zhu, WeiWei
Wang, Wei-yang
Yang, Yuan-Pei
Qu, Yuanhong
Zhang, Yong-Kun
Yan, Yi
Jing, Wei-Cong
Cao, Shuo
Xie, Jintao
Yang, Xuan
Tian, Shiyan
Li, Ye
Li, Dongzi
Niu, Jia-Rui
Wu, Zi-Wei
Wu, Qin
Feng, Yi
Wang, Fayin
Wang, Pei
High Energy Astrophysical Phenomena
We report the observations of a repeating FRB 20230607A for 15.6 hours spanning 16 months using the Five-hundred-meter Aperture Spherical Radio Telescope (FAST) with the detection of 565 bursts. We present three bright bursts with detailed temporal/spectral structures. We also report that one burst carries a narrow component with a width of only 0.3 ms, which is surrounded by broader components. This suggests that repeaters can make both narrow and broad components in one burst. With the narrow spike, we precisely measure the dispersion measure (DM) of $362.85 \pm 0.15 \;{\rm pc\,cm^{-3}}$ and the Faraday rotation measures (RMs) of and $-12249.0\pm 1.5 \; {\rm rad\,m^{-2}}$. We also analyze the statistical distribution of the burst parameters, including waiting times, temporal widths, central frequencies and frequency widths, fluences and energies, all showing typical distributions of known active repeaters. In particular, most bursts show narrow spectra with $Δν/ν_0 = 0.125\pm 0.001$. This fact, together with the narrow 0.3 ms spike, strongly suggests a magnetospheric origin of the FRB emission. Based on a predicted correlation between RM and the luminosity of a persistent radio source (PRS) by Yang et al., we predict that PRS should have a specific luminosity of the order of $10^{29} \ {\rm erg \ s^{-1} \ Hz^{-1}}$ and encourage a search for such a PRS.
title Bright bursts with sub-millisecond structures of FRB 20230607A in a highly magnetized environment
topic High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2504.11173