X-Ray Hardening Preceding the Onset of SGR 1935+2154's Radio Pulsar Phase

Magnetars are neutron stars with extremely strong magnetic fields, frequently powering high-energy activity in X-rays. Pulsed radio emission following some X-ray outbursts has been detected, albeit its physical origin is unclear. It has long been speculated that the origin of magnetars’ radio signal...

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Veröffentlicht in:The Astrophysical journal. Supplement series 2024-12, Vol.275 (2), p.39
Hauptverfasser: Wang, Pei, Li, Jian, Ji, Long, Hou, Xian, Gügercinoğlu, Erbil, Li, Di, Torres, Diego F., Chen, Yutong, Niu, Jiarui, Zhu, Wei-Wei, Zhang, Bing, Liang, En-Wei, Zhang, Li, Ge, Mingyu, Dai, Zigao, Lin, Lin, Han, Jinlin, Feng, Yi, Niu, Chenhui, Zhang, Yongkun, Zhou, Dejiang, Xu, Heng, Zhang, Chunfeng, Jiang, Jinchen, Miao, Chenchen, Yuan, Mao, Wang, Weiyang, Zhou, Dengke, Fang, Jianhua, Yue, Youling, Wu, Yunsheng, Wang, Yabiao, Wang, Chengjie, Gan, Zhenye, Li, Yuxi, Sun, Zhongyi, Chi, Mingmin, Zhang, Junshuo, Cao, Jinhuang, Lu, Wanjin, Wang, Yidan
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Sprache:eng
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Zusammenfassung:Magnetars are neutron stars with extremely strong magnetic fields, frequently powering high-energy activity in X-rays. Pulsed radio emission following some X-ray outbursts has been detected, albeit its physical origin is unclear. It has long been speculated that the origin of magnetars’ radio signals is different from those from canonical pulsars, although convincing evidence is still lacking. Five months after magnetar SGR 1935+2154's X-ray outburst and its associated fast radio burst 20200428, a radio pulsar phase was discovered. Here we report the discovery of X-ray spectral hardening associated with the emergence of periodic radio pulsations from SGR 1935+2154 and a detailed analysis of the properties of the radio pulses. The observations suggest that radio emission originates from the outer magnetosphere of the magnetar, and the surface heating due to the bombardment of inward-going particles from the radio emission region is responsible for the observed X-ray spectral hardening.
ISSN:0067-0049
1538-4365
DOI:10.3847/1538-4365/ad7c3f