A Systematic Study of Associations between Supernova Remnants and Molecular Clouds
Xin Zhou, Yang Su, Ji Yang, Xuepeng Chen, Yan Sun, Zhibo Jiang, Min, Wang, Hongchi Wang, Shaobo Zhang, Ye Xu, Qingzeng Yan, Lixia Yuan, Zhiwei, Chen, Yiping Ao, Yuehui Ma

TL;DR
This study systematically investigates the association between supernova remnants and molecular clouds across the Milky Way using CO survey data, revealing high association rates and insights into their distribution and progenitor properties.
Contribution
It provides a comprehensive, unbiased analysis of SNR-MC associations across the Galaxy, utilizing automatic algorithms and high-quality CO data to quantify association rates and spatial distributions.
Findings
Up to 80% of SNRs are associated with molecular clouds.
Most associations are within 50 degrees of Galactic longitude.
Progenitor masses follow a Salpeter-like distribution.
Abstract
We universally search for evidence of kinematic and spatial correlation of supernova remnant (SNR) and molecular cloud (MC) associations for nearly all SNRs in the coverage of the MWISP CO survey, i.e. 149 SNRs, 170 SNR candidates, and 18 pure pulsar wind nebulae (PWNe) in 1 deg < l < 230 deg and -5.5 deg < b < 5.5 deg. Based on high-quality and unbiased 12CO/13CO/C18O (J = 1--0) survey data, we apply automatic algorithms to identify broad lines and spatial correlations for molecular gas in each SNR region. The 91% of SNR-MC associations detected previously are identified in this paper by CO line emission. Overall, there could be as high as 80% of SNRs associated with MCs. The proportion of SNRs associated with MCs is high within the Galactic longitude less than ~50 deg. Kinematic distances of all SNRs that are associated with MCs are estimated based on systemic velocities of associated…
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Taxonomy
TopicsAstrophysics and Cosmic Phenomena · Atmospheric Ozone and Climate · Ionosphere and magnetosphere dynamics
