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Modified Jeans instability of magnetized viscous spin 1/2 quantum plasma with resistive effects and Hall current

机译:具有电阻效应和霍尔电流的磁化粘性自旋1/2量子等离子体的改良Jeans不稳定性

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摘要

The effect of Hall current on Jeans self-gravitational instability is examined for finitely conducting dense quantum viscous plasma in the presence of spin generated magnetization. The basic equations of the problem are constructed using quantum magneto hydrodynamic (QMHD) model. The Hall and resistivity terms are incorporated in the idealized Ohm’s law and spin induced magnetization and viscosity terms are incorporated to the momentum equations. The general dispersion relation is found to be modified due to the presence of Hall current, electrical resistivity and viscosity parameter along with the spin induced magnetization. The dispersion relation is further reduced for both transverse and longitudinal mode of propagations. In the transverse mode of propagation the Jeans condition of instability is modified due to Alfven velocity, magnetization parameter and quantum corrections, and the growth rate of instability is found to be modified due to the electrical resistivity, viscosity, magnetization parameter and quantum corrections but remains unaffected by the presence of Hall current. In longitudinal direction of propagation the gravitational mode is affected due to the viscosity and quantum parameter while the Jeans condition of instability depends only upon the quantum correction. The Alfven mode in longitudinal direction gets modified due to the electrical resistivity, Hall current, viscosity and magnetization parameter however, it is found to be independent of quantum corrections. The numerical observations are also presented to show the effect of electrical resistivity, magnetization and quantum corrections on the growth rate of instability.
机译:在存在自旋产生的磁化强度的情况下,针对有限地传导致密量子粘滞等离子体,研究了霍尔电流对Jeans自引力不稳定性的影响。问题的基本方程式是使用量子磁流体力学(QMHD)模型构造的。霍尔和电阻率项被合并到理想化的欧姆定律中,而自旋感应磁化和粘度项被合并到动量方程中。由于霍尔电流,电阻率和粘度参数以及自旋感应磁化强度的存在,一般色散关系被修改。对于横向和纵向传播模式,色散关系进一步减小。在横向传播模式中,由于Alfven速度,磁化参数和量子校正而修改了Jeans失稳条件,并且由于电阻率,粘度,磁化参数和量子校正而发现了不稳定性的增长速率,但仍然存在不受霍尔电流的影响。在传播的纵向方向上,重力模式受粘度和量子参数的影响,而吉恩斯不稳定性条件仅取决于量子校正。由于电阻率,霍尔电流,粘度和磁化参数,纵向Alfven模式被修改,但是发现它与量子校正无关。还提供了数值观察结果,以显示电阻率,磁化强度和量子校正对不稳定性生长速率的影响。

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