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Visco-instability of shear viscoelastic collisional dusty plasma systems

机译:剪切粘弹性碰撞尘灰尘等离子体系统的粘性稳定性

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In this paper, the stability of Newtonian and non-Newtonian viscoelastic collisional shear-velocity dusty plasmas is studied, using the framework of a generalized hydrodynamic (GH) model. Motivated by Banerjee et al.'s work (Banerjee et al., New J. Phys., vol. 12 (12), 2010, p. 123031), employing linear perturbation theory as well as the local approximation method in the inhomogeneous direction, the dispersion relations of the Fourier modes are obtained for Newtonian and non-Newtonian dusty plasma systems in the presence of a dust-neutral friction term. The analysis of the obtained dispersion relation in the non-Newtonian case shows that the inhomogeneous viscosity force depending on the velocity shear profile can be the genesis of a free energy source which leads the shear system to be unstable. Study of the dust-neutral friction effect on the instability of the considered systems using numerical analysis of the dispersion relation in the Newtonian case demonstrates that the maximum growth rate decreases considerably by increasing the collision frequency in the hydrodynamic regime, while this reduction can be neglected in the kinetic regime. Results show a more significant stabilization role of the dust-neutral friction term in the non-Newtonian cases, through decreasing the maximum growth rate at any fixed wavenumber and construction of the instable wavenumber region. The results of the present investigation will greatly contribute to study of the time evolution of viscoelastic laboratory environments with externally applied shear; where in these experiments the dust-neutral friction process can play a considerable role.
机译:本文研究了牛顿和非牛顿粘弹性碰撞剪切速度尘埃粉碎等离子体的稳定性,使用广义流体动力学(GH)模型的框架。由Banerjee等人的作用。作品(Banerjee等,新的J. Phys,Vol.12(12),2010,p.123031),采用线性扰动理论以及在非均匀方向上的局部逼近方法,在存在粉尘中性摩擦术语存在下,为牛顿和非牛顿粉尘等离子体系统获得傅立叶模式的分散关系。在非牛顿病例中获得的分散关系的分析表明,取决于速度剪切曲线的非均匀粘度力可以是引入剪切系统不稳定的自由能源的成因。使用数值分析牛顿病例中的分散关系数值分析的粉尘 - 中性摩擦效应的研究表明,通过增加水动力制度中的碰撞频率,最大增长速率显着降低,而这种减少可以忽略在动态制度。结果表明,在非牛顿病例中的粉尘中性摩擦术中的稳定作用更为显着的稳定作用,通过降低任何固定波数的最大生长速率和稳定波数区域的构造。目前调查的结果将大大有助于研究粘弹性实验室环境的时间演变,外部施用剪切;在这些实验中,粉尘中性摩擦过程可以起到相当大的作用。

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