论文标题
非热等离子体中尘埃离子声波和相关的孤子的调节不稳定性
Modulational instability of dust-ion-acoustic waves and associated envelope solitons in a non-thermal plasma
论文作者
论文摘要
已经进行了一项理论研究,以了解与具有惯性温暖阳性离子和负粉尘谷物的粉尘型灰尘型粉尘介质和固有的非毛刺非毛孔的非毛刺式的非毛刺式的分布式电子相关的粉尘 - 离子声波(DIAW)相关的明亮和深色包膜溶剂的形成机制。非线性schrödinger方程(NLSE)是通过使用还原性扰动方法得出的。等离子参数的影响,即$γ_2$(正离子温度与电子温度乘以离子的电荷状态的比率)和$ν$(负灰尘晶粒的电荷状态与阳性离子的电荷状态的比率)在NLSE控制的DIAW调节不稳定性上是广泛研究的。发现增加离子(电子)温度的值降低(增强)临界波数($ k_c $)。我们目前的理论工作的结果可用于解释在许多天体物理环境和实验室等离子体中可能存在的非线性静电结构。
A theoretical investigation has been made to understand the mechanism of the formation of both bright and dark envelope soltions associated with dust-ion-acoustic waves (DIAWs) propagating in an unmagnetized three component dusty plasma medium having inertial warm positive ions and negative dust grains, and inertialess non-thermal Cairns' distributed electrons. A nonlinear Schrödinger equation (NLSE) is derived by employing reductive perturbation method. The effects of plasma parameters, viz., $γ_2$ (the ratio of the positive ion temperature to electron temperature times the charge state of ion) and $ν$ (the ratio of the charge state of negative dust grain to positive ion) on the modulational instability of DIAW which is governed by NLSE, are extensively studied. It is found that increasing the value of the ion (electron) temperature reduces (enhances) the critical wave number ($k_c$). The results of our present theoretical work may be used to interpret the nonlinear electrostatic structures which can exist in many astrophysical environments and laboratory plasmas.