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Crushing of Interstellar Gas Clouds in Supernova Remnants: the Role of Thermal Conduction and Radiative Losses

机译:在超新星残余物中粉碎星际煤气云:热传导和辐射损耗的作用

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摘要

We model hydrodynamic interactions of an old supernova remnant shock wave with a small interstellar gas cloud, taking into account the effects of thermal conduction and radiative losses. In particular, we consider a representative case of a Mach 30 shock impacting on an isolated cloud with density contrast X = 10 with respect to the ambient medium. Thermal conduction appears to be effective in suppressing the Kelvin-Helmholtz and Rayleigh-Taylor instabilities which would develop at the cloud boundaries. We demonstrate that the radiative losses play a crucial role in the dynamics of the shock-cloud interaction, dominating evolution of the shocked cloud medium.
机译:考虑到热传导和辐射损耗的影响,我们模拟了旧超新星残余冲击波的流体动力相互作用。特别地,我们考虑Mach 30冲击的代表性案例对与密度对比X = 10相对于环境介质的密度对比X = 10的孤立的云进行冲击。热传导似乎有效地抑制了Kelvin-Helmholtz和Rayleigh-Taylor Instabilities,这将在云边界中发展。我们证明辐射损失在震荡云相互作用的动态中发挥着至关重要的作用,震惊云介质的偏移演化。

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