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首页> 外文期刊>The Astrophysical journal >INCORPORATION OF AMBIPOLAR DIFFUSION INTO THE ZEUS MAGNETOHYDRODYNAMICS CODE
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INCORPORATION OF AMBIPOLAR DIFFUSION INTO THE ZEUS MAGNETOHYDRODYNAMICS CODE

机译:将两极扩散并入宙斯磁氢动力学代码

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Magnetic fields tied to ions can diffuse through mostly neutral gas: this occurs in protostellar disks and in the cores of molecular clouds. We describe an algorithm that includes ambipolar diffusion in the astrophysical magnetohydrodynamics code ZEUS. We use the approximations that both electrons and ions have equal and constant temperature, that the ion inertia is negligible, and that the ion density is proportional to a power of the neutral density. Our algorithm is fully explicit, and treats the magnetic field using constrained transport and the method of characteristics. We test the algorithm by computing the gravitational collapse of a magnetically supported slab, and by comparing the computed solution for an oblique C-shock to a semi-analytic solution that we have derived. We then compute the development of the magnetorotational instability described by Balbus and Hawley in a magnetized accretion disk, including the effects of ambipolar diffusion. Our computation agrees with the published linear analysis of how diffusion prevents instability, and it allows us to describe the nonlinear development of the instability when diffusion is important but not dominant. We find that ambipolar diffusion indeed creates the sharp structures predicted by Brandenburg and Zweibel.
机译:与离子束缚的磁场可以通过大部分中性气体扩散:这发生在原恒星盘和分子云的核中。我们描述了一种在天体磁流体动力学代码ZEUS中包含双极性扩散的算法。我们使用这样的近似值:电子和离子都具有相同且恒定的温度,离子惯性可以忽略,并且离子密度与中性密度的幂成比例。我们的算法是完全明确的,并使用约束传输和特征方法来处理磁场。我们通过计算磁性支撑平板的重力塌陷,并将斜C冲击的计算解与我们得出的半解析解进行比较,来测试算法。然后,我们计算由Balbus和Hawley在磁化吸积盘中描述的磁旋转不稳定性的发展,包括双极扩散的影响。我们的计算与已发表的关于扩散如何防止不稳定性的线性分析相吻合,并且它使我们能够描述当扩散很重要但不占主导地位时不稳定的非线性发展。我们发现,双极扩散确实创造了勃兰登堡和兹韦伯所预测的尖锐结构。

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