arXiv · 1912.10706
Chemical evolution of cold dark clouds in the vicinity of supernova remnants
Abstract
The supernova explosion increases cosmic ray and x-ray fluxes in the surrounding interstellar medium. Cosmic ray particles and x-ray radiation penetrate nearby molecular clouds and affect the chemical and thermal evolution of the gas. Here we study chemical changes in the dense molecular gas influenced by a sudden increase of the ionization rate that may be caused by the supernova explosion. At the cloud core density $2 \times 10^4$ cm$^{-3}$, the H atom abundance reaches the equilibrium value at about $3 \times 10^4$ yr after the change in irradiation conditions. The response time of abundances of icy mantle species is $10^4-10^5$ yr. The abundances of neutral and grain mantle species may not reach their equilibrium values in molecular clouds in the vicinity of 'middle-aged' supernova remnants.
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A. V. Nesterenok. 2019-12-23. Chemical evolution of cold dark clouds in the vicinity of supernova remnants. https://doi.org/10.1088/1742-6596%2F1400%2F2%2F022025
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