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Magnetothermal instability in weakly magnetized plasmas with anisotropic resistivity and viscosity

机译:具有各向异性电阻率和粘度的弱磁等离子体中的磁热不稳定性

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摘要

The linear buoyancy instability in magnetized plasmas is investigated in the presence of anisotropic resistivity and viscosity. The magnetic field is assumed to be horizontal and the background heat flux is not taken into account. That is, the magnetic field lines are initially isothermal. The heat is assumed to be primarily transported along the magnetic force lines. The general dispersion relationship of the thermal convective instability in the presence of anisotropic resistive and viscous dissipative effects is derived and discussed in detail in weak magnetic field limit. Our results show that the perturbation is damped when the temperature decreases in the direction of gravity due to the resistive or viscous effect while this situation results in pure oscillation modes in the ideal MHD case. The resistive and viscous effects are shown to reduce the growth rate of the magnetothermal instability when the temperature increases in the direction of gravity.
机译:在存在各向异性电阻率和粘度的情况下,研究了磁化等离子体中的线性浮力不稳定性。假定磁场是水平的,并且不考虑背景热通量。即,磁场线最初是等温的。假设热量主要沿着磁力线传输。在各向异性的电阻性和粘性耗散效应存在下,热对流不稳定性的一般色散关系被推导并在弱磁场极限下进行了详细讨论。我们的结果表明,由于电阻或粘性效应,温度沿重力方向降低时,摄动会受到抑制,而在理想的MHD情况下,这种情况会导致纯振荡模式。当温度沿重力方向增加时,电阻效应和粘性效应会降低磁热不稳定性的增长率。

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