Veeresha B M, Tiwari S K, Sen A, Kaw P K, Das A
Institute for Plasma Research, Bhat, Gandhinagar 382428, India.
Phys Rev E Stat Nonlin Soft Matter Phys. 2010 Mar;81(3 Pt 2):036407. doi: 10.1103/PhysRevE.81.036407. Epub 2010 Mar 12.
The nonlinear propagation of low-frequency waves in a strongly coupled dusty plasma medium is studied theoretically in the framework of the phenomenological generalized hydrodynamic (GH) model. A set of simplified model nonlinear equations are derived from the original nonlinear integrodifferential form of the GH model by employing an appropriate physical ansatz. Using standard perturbation techniques characteristic evolution equations for finite small amplitude waves are then obtained in various propagation regimes. The influence of viscoelastic properties arising from dust correlation contributions on the nature of nonlinear solutions is discussed. The modulational stability of dust acoustic waves to parallel perturbation is also examined and it is shown that dust compressibility contributions influenced by the Coulomb coupling effects introduce significant modification in the threshold and range of the instability domain.
在唯象广义流体动力学(GH)模型的框架下,从理论上研究了低频波在强耦合尘埃等离子体介质中的非线性传播。通过采用适当的物理假设,从GH模型的原始非线性积分微分形式导出了一组简化的模型非线性方程。然后,利用标准微扰技术,在各种传播 regime 中得到了有限小振幅波的特征演化方程。讨论了尘埃关联贡献引起的粘弹性性质对非线性解性质的影响。还研究了尘埃声波对平行微扰的调制稳定性,结果表明,受库仑耦合效应影响的尘埃压缩性贡献对不稳定域的阈值和范围产生了显著的修正。