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Absence of Radio Emission Reveals an Exceptionally Weak Explosion of the Putative Historical Supernova Pa 30

作者:Yi-Xuan Shao, Ping Zhou, Xiao Zhang, Zhi-Yu Zhang, Yang Chen, Qin Han, Di Li, Xiang‐Dong Li, Jianbin Weng, Yong Shao · 发表于:The Astrophysical Journal Letters · 年份:2025 · DOI:10.3847/2041-8213/ae092d · 被引用次数:4 · 研究领域:Gamma-ray bursts and supernovae、Astrophysics and Cosmic Phenomena、Pulsars and Gravitational Waves Research

Abstract We present the first deep radio continuum observations of Pa 30, a nebula hosting a unique optical source driven by an ultrafast outflow with a velocity of 16,000 km s −1 . The nebula was proposed to be the remnant of a white dwarf merger that occurred in 1181CE. We report no detection of the radio diffuse emission from Pa 30 or radio emission from the central source, setting 3 σ upper limit flux densities of 0.84 and 0.29 mJy at 1.5 and 6 GHz, respectively, for Pa 30. The radio surface brightness of Pa 30 is ∼3 orders of magnitude smaller than that of typical supernova remnants (SNRs) with comparable angular size. If Pa 30 is an SNR, our observations show it to be the faintest known in the radio band. Considering that 10% of the supernova (SN) kinetic energy is transferred to cosmic rays (CRs), the absence of radio synchrotron emission suggests that the SN kinetic energy ≲3 × 10 47 ( B /10 μ G) −1.65 erg, which is 3–4 orders of magnitude lower than that of typical SNRs and the lowest measured among Galactic SNRs. There is also an indication of inefficient CR acceleration for this source. The low SN kinetic energy either implies the potential existence of many more radio-faint, subenergetic SNRs in our Galaxy or challenges the SNR interpretation of Pa 30.