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Nonlinear theory for dust voids in plasmas

机译:等离子体尘埃孔隙的非线性理论

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A nonlinear theory for dust voids in plasmas is presented. Specifically, it is shown that dust voids are caused by a large potential drop associated with the ion holes and double layers in plasmas. For this purpose, we solve cylindrically symmetric Poisson's equation with a Boltzmann electron density distribution, a modified Boltzmann dust density distribution, and an ion response consisting of trapped and untrapped ion velocity distributions in the self-consistent plasma potential. Numerical results exhibit significant holes in the ion distribution function, accompanied by a large electrostatic potential drop and charge density double layers. We discuss the underlying physics of dust voids in terms of our self-consistent steady state solutions of the Vlasov-Poisson system of equations. (C) 2003 Elsevier Science B.V. All rights reserved. [References: 26]
机译:提出了等离子体尘埃孔隙的非线性理论。具体地,显示出尘埃空隙是由与离子孔和等离子体中的双层相关的大的电位降引起的。为此,我们求解具有玻尔兹曼电子密度分布,修正的玻尔兹曼尘埃密度分布以及由自洽等离子体势垒中的俘获和未俘获离子速度分布组成的离子响​​应的圆柱对称Poisson方程。数值结果在离子分布函数中显示出显着的孔洞,并伴随着较大的静电势降和双层电荷密度。我们根据Vlasov-Poisson方程组的自洽稳态解来讨论尘埃孔隙的基本物理原理。 (C)2003 Elsevier Science B.V.保留所有权利。 [参考:26]

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