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Formation of massive molecular cloud cores by cloud-cloud collision

机译:云云碰撞形成大分子云核

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Recent observations of molecular clouds around rich massive star clusters including NGC 3603, Westerlund 2, and M20 revealed that the formation of massive stars could be triggered by a cloud-cloud collision. By using three-dimensional, isothermal, magnetohydrodynamics simulations with the effect of self-gravity, we demonstrate that massive, gravitationally unstable, molecular cloud cores are formed behind the strong shock waves induced by cloud-cloud collision. We find that the massive molecular cloud cores have large effective Jeans mass owing to the enhancement of the magnetic field strength by shock compression and turbulence in the compressed layer. Our results predict that massive molecular cloud cores formed by the cloud-cloud collision are filamentary and threaded by magnetic fields perpendicular to the filament.
机译:最近对包括NGC 3603,Westerlund 2和M20在内的大量大质量恒星团周围的分子云的观察表明,大质量恒星的形成可能是由云-云碰撞触发的。通过使用具有自重影响的三维等温磁流体动力学模拟,我们证明了在由云-云碰撞引起的强烈冲击波之后,形成了巨大的,重力不稳定的分子云核。我们发现块状分子云核由于通过压缩层中的冲击压缩和湍流而增强了磁场强度,因此具有较大的有效Jeans质量。我们的结果预测,由云-云碰撞形成的大量分子云核心是丝状的,并通过垂直于丝状的磁场穿过。

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