TWO-FLUID MHD SIMULATIONS OF CONVERGING HI FLOWS IN THE INTERSTELLAR MEDIUM. I: METHODOLOGY AND BASIC RESULTS
TWO-FLUID MHD SIMULATIONS OF CONVERGING HI FLOWS IN THE INTERSTELLAR MEDIUM. I: METHODOLOGY AND BASIC RESULTS
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发表时间:
2019
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通讯作者:
T. Inoue;S. Inutsuka
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作者:
T. Inoue;S. Inutsuka
We develop an unconditionally stable numerical method for s olving the coupling between two fluids (frictional forces/heatings, ionizatio n, and recombination), and investigate the dynamical condensation process of thermally unstable gas that is provided by the shock waves in a weakly ionized and magnetized in t rstellar medium by using two-dimensional two-fluid magnetohydrodynamical si mulations. If we neglect the effect of magnetic field, it is known that condensation dr iven by thermal instability can generate high density clouds whose physical condition c orresponds to molecular clouds (precursor of molecular clouds). In this paper, we st udy the effect of magnetic field on the evolution of supersonic converging HI flows and focus on the case in which the orientation of magnetic field to converging flows is orthogonal. We show that the magnetic pressure gradient parallel to the flows pre vents the formation of high density and high column density clouds, but instead generat es fragmented, filamentary HI clouds. With this restricted geometry, magnetic field dra stically diminishes the opportunity of fast molecular cloud formation directly from t he warm neutral medium, in contrast to the case without magnetic field.