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首页> 外文期刊>The Astrophysical journal >THE INABILITY OF AMBIPOLAR DIFFUSION TO SET A CHARACTERISTIC MASS SCALE IN MOLECULAR CLOUDS
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THE INABILITY OF AMBIPOLAR DIFFUSION TO SET A CHARACTERISTIC MASS SCALE IN MOLECULAR CLOUDS

机译:分子云中的两极扩散无法设定特征量表

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We investigate the question of whether ambipolar diffusion (ion-neutral drift) determines the smallest length and mass scales on which structure forms in a turbulent molecular cloud. We simulate magnetized turbulence in a mostly neutral, uniformly driven, turbulent medium, using a three-dimensional, two-fluid, magnetohydrodynamics (MHD) code modified from Zeus-MP. We find that substantial structure persists below the ambipolar diffusion scale because of the propagation of compressive slow MHD waves at smaller scales. Contrary to simple scaling arguments, ambipolar diffusion thus does not suppress structure below its characteristic dissipation scale, as would be expected for a classical diffusive process. We have found this to be true for the magnetic energy, velocity, and density. Correspondingly, ambipolar diffusion leaves the clump mass spectrum unchanged. Ambipolar diffusion appears unable to set a characteristic scale for gravitational collapse and star formation in turbulent molecular clouds.
机译:我们研究了双极性扩散(离子中性漂移)是否确定了在湍流分子云中形成结构的最小长度和质量尺度的问题。我们使用从Zeus-MP修改而来的三维,双流体,磁流体动力学(MHD)代码,在一种中性,均匀驱动的湍流介质中模拟磁化湍流。我们发现,由于压缩慢MHD波在较小尺度上的传播,实质结构在双极性扩散尺度以下持续存在。与简单的比例论证相反,双极性扩散因此不能将结构抑制到其特征耗散尺度以下,这是经典扩散过程所期望的。我们发现这对于磁能,速度和密度都是正确的。相应地,双极性扩散使团块质谱保持不变。双极性扩散似乎无法为湍流分子云中的重力坍塌和恒星形成设定特征尺度。

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