首页> 外文期刊>Physica Scripta: An International Journal for Experimental and Theoretical Physics >Dust-acoustic waves with finite OAM in a self-gravitating dusty plasma with superthermal energetic tails of electrons and ions
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Dust-acoustic waves with finite OAM in a self-gravitating dusty plasma with superthermal energetic tails of electrons and ions

机译:具有有限烟雾的灰尘声波,在自我捕捉尘土飞溅物中,具有超高热量的电子和离子

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摘要

The kinetic instability of twisted dust-acoustic (DA) wave with distinct orbital angular momentum states is studied in an unmagnetized self-gravitating superthermal dusty plasma. For this purpose, the linearized Vlasov-Poisson equations are solved together by expressing the perturbed distribution function, electrostatic and gravitational potentials in terms of Laguerre-Gauss functions or solutions. A generalized plasma dielectric constant is derived and the existence conditions for the damping/growth rates are identified. The impact of streaming speed, dust self-gravitation, superthermality and twist parameters are numerically examined on the growth rate instability. It has been found that parametric variation significantly modifies the threshold conditions and associated growth rate instability of twisted DA waves. The relevance of the present results to interstellar dust clouds is illustrated, where massive dust grains follow a Maxwellian distribution in addition to superthermal electrons and ions.
机译:研究了具有不同轨道角动量状态的扭曲灰尘 - 声学(DA)波的动力学不稳定性在一个未磁力的自重热粉末粉尘等离子体中研究。为此目的,通过表达Laguerre-Gause功能或解决方案的扰动分布函数,静电和重力电位来解决线性化Vlasov-Poisson方程。推导出广义等离子体介电常数,并且鉴定了阻尼/生长速率的存在条件。流动速度,灰尘自我成力,超高热和扭曲参数的影响在数值上进行了数量地检查了生长速率不稳定。已经发现,参数变化显着地改变了扭曲的DA波的阈值条件和相关的生长速率不稳定性。目前结果与星际尘埃云的相关性示出,除了高温电子和离子之外,大规模的粉尘谷物遵循最大粉末分布。

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