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Star Formation and the Properties of Giant Molecular Clouds in Global Simulations

机译:全球模拟中巨型分子云的明星形成和性质

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We simulated an isolated quiescent Milky Way-type galaxy with a maximum effective resolution of 7.8 pc. Clouds formed in the interstellar medium through gravitational fragmentation and became the sites for star formation. We tracked the evolution of the clouds through 300 Myr in the presence of star formation, photoelectric heating and feedback from Type II supernovae. The cloud mass distribution agreed well with observational results. Feedback suppressed star formation but did not destroy the surrounding cloud. Collisions between clouds were found to be sufficiently frequent to be a significant factor in determining the star formation rate.
机译:我们模拟了孤立的静态银河系型星系,最大有效分辨率为7.8 PC。通过引力碎片形成在星际培养基中形成的云,成为明星形成的遗址。在星形形成,光电加热和II型超新佳地区的反馈中,我们通过300 MYR追踪云的演变。云质谱与观察结果很好。反馈抑制明星形成,但没有摧毁周围的云。发现云之间的碰撞是充分频繁的是确定星形成率的重要因素。

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