Scholay

学术搜索 · AI 审稿 · LaTeX 协作

A 44-min periodic radio transient in a supernova remnant.

作者:Di Li, Mao Yuan, Lin Wu, Jingye Yan, Xuning Lv, Chaowei Tsai, P Wang, Jiaqi Zhao, W M Zhu, Li Deng, Ailan Lan, Renxin Xu, X J Chen, Lingqi Meng, J Q Li, Xiangdong Li, Ping Zhou, Haoran Yang, Mengyao Xue, Jiguang Lu, Chenchen Miao, Weiyang Wang, Jiarui Niu, Ziyao Fang, Qiuyang Fu, Yi Feng, Peijing Zhang, Jinchen Jiang, Xueli Miao, Yu Chen, L G Sun, Yang Yang, Deng Xiang, Shi Dai, Xue Chen, J Yao, Y. Liu, C.K. Li, Minglu Zhang, Yiwen Yang, Yi Zhou, Yiyi Zhou, Yongkun Zhang, Chenhui Niu, Rushuang Zhao, Lei Zhang, Bo Peng, Jianmin Wu, Chi Wang · 发表于:PubMed · 年份:2026 · DOI:10.1016/j.scib.2026.06.015 · 研究领域:Astrophysics and Cosmic Phenomena、Pulsars and Gravitational Waves Research、Solar and Space Plasma Dynamics

Long-period radio transients (LPTs) are a newly discovered class of radio emitters with periods ranging from minutes to hours. The astrophysical nature remains undetermined, particularly of LPTs with no detectable companions. We report the first evidence for a plausible supernova remnant (SNR) association with an LPT (DART J1832-0911, 2656.23 ± 0.15 s period), which supports a neutron star origin of such objects. The dispersion measure of this LPT, SNR's CO emission and neutral hydrogen (HI) absorption, and low probability of chance of alignment with field pulsars are all consistent with such an association. The source displays either phase-locked circular or nearly 100% linear polarization, indicating its strong and geometrically stable magnetic field. No detectable optical counterpart was found, even with a 10 m-class telescope. The SNR association and the stable polarization suggest that DART J1832-0911 most likely originates from a young neutron star, whose spin could have been braked by supernova's fallback materials. This discovery provides critical insights into the nature of ultra-long period transients and their link to stellar remnants.