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Modulational instability of electromagnetic waves in a collisional quantum magnetoplasma

机译:碰撞量子磁等离子体中电磁波的调制不稳定性

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The modulational instability of right-hand circularly polarized electromagnetic electron cyclotron (CPEM-EC) wave in a magnetized quantum plasma is studied taking into account the collisional effects. Employing quantum hydrodynamic and nonlinear Schr?dinger equations, the dispersion relation of modulated CPEM-EC wave in a collisional plasma has been derived. It is found that this wave is unstable in such a plasma system and the growth rate of the associated instability depends on various parameters such as electron Fermi temperature, plasma number density, collision frequency, and modulation wavenumber. It is shown that while the increase of collision frequency leads to increase of the growth rate of instability, especially at large wavenumber limit, the increase of plasma number density results in more stable modulated CPEM-EC wave. It is also found that in contrast to collisionless plasma in which modulational instability is restricted to small wavenumbers, in collisional plasma, the interval of instability occurrence can be extended to a large domain.
机译:考虑到碰撞效应,研究了右旋圆极化电磁回旋加速器(CPEM-EC)在磁化量子等离子体中的调制不稳定性。利用量子流体动力学和非线性薛定er方程,推导了调制CPEM-EC波在碰撞等离子体中的色散关系。已经发现该波在这样的等离子体系统中是不稳定的,并且相关的不稳定性的增长率取决于各种参数,例如电子费米温度,等离子体数密度,碰撞频率和调制波数。结果表明,虽然碰撞频率的增加导致不稳定性的增长速度增加,尤其是在大波数极限下,但等离子体数密度的增加导致了更稳定的调制CPEM-EC波。还发现,与将调制不稳定性限制在小波数上的无碰撞等离子体相反,在碰撞等离子体中,不稳定性发生的间隔可以扩展到大的范围。

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