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Magnetorotational Instability in a Couette Flow of Plasma

机译:血浆库埃特流中的磁旋转不稳定性

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摘要

All experiments, which have been proposed so far to model the magnetorotational instability (MRI) in the laboratory, involve a Couette flow of liquid metals in a rotating annulus. All liquid metals have small magnetic Prandtl numbers, Pm ~ 10~(-6), the ratio of kinematic viscosity to magnetic diffusivity. With plasmas both large and small Pm are achievable by varying the temperature and the density of plasma. Compressibility and fast rotation of the plasma result in radial stratification of the equilibrium plasma density. Evolution of perturbations in radially stratified viscous and resistive plasma permeated by an axial uniform magnetic field is considered. The differential rotation of the plasma is induced by the E x B drift in applied radial electric field. Global unstable eigenmodes are calculated by our newly developed matrix code. The plasma is shown to be MRI unstable for parameters easily achievable in experimental setup.
机译:迄今为止,已经提出了所有用于在实验室中模拟磁旋转不稳定性(MRI)的实验,这些实验都涉及到旋转环空中液态金属的库埃特流。所有液态金属的磁普朗特数均较小,Pm〜10〜(-6),运动粘度与磁扩散率之比。对于等离子体,通过改变等离子体的温度和密度既可以实现大Pm,也可以实现小Pm。等离子体的可压缩性和快速旋转导致平衡等离子体密度的径向分层。考虑了径向分层的粘性和轴向均匀磁场渗透的电阻性等离子体中扰动的演变。等离子体的旋转差是由施加的径向电场中的E x B漂移引起的。全局不稳定本征模是通过我们新开发的矩阵代码来计算的。对于在实验设置中容易达到的参数,血浆显示为MRI不稳定。

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