Excitation of dust acoustic shock waves in an inhomogeneous dusty plasma

G. Arora, P. Bandyopadhyay, M. Hariprasad, A. Sen
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引用次数: 7

Abstract

An experimental investigation of the propagation characteristics of shock waves in an inhomogeneous dusty plasma is carried out in the Dusty Plasma Experimental (DPEx) device. A homogeneous dusty plasma, made up of poly-dispersive kaolin particles, is initially formed in a DC glow discharge Argon plasma by maintaining a dynamic equilibrium of the pumping speed and the gas feeding rate. Later, an equilibrium density inhomogeneity in the dust fluid is created by introducing an imbalance in the original dynamic equilibrium. Non-linear wave structures are then excited in this inhomogeneous dusty plasma by a sudden compression in the dust fluid. These structures are identified as shock waves and their amplitude and width profiles are measured spatially. The amplitude of a shock structure is seen to increase whereas the width broadens as it propagates down a decreasing dust density profile. A modified-KdV-Burger equation is derived and used to provide a theoretical explanation of the results including the power law scaling of the changes in the amplitude and width as a function of the background density.
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非均匀尘埃等离子体中尘埃声激波的激发
在尘埃等离子体实验装置(DPEx)上对激波在非均匀尘埃等离子体中的传播特性进行了实验研究。在直流辉光放电氩等离子体中,通过保持泵送速度和进气速度的动态平衡,初始形成了由多分散高岭土颗粒组成的均匀尘埃等离子体。随后,通过在原始动态平衡中引入不平衡,在粉尘流体中产生平衡密度不均匀性。非线性波结构随后在这个不均匀的尘埃等离子体中被突然压缩的尘埃流体激发。这些结构被识别为激波,它们的振幅和宽度分布在空间上被测量。激波结构的振幅增加,而宽度变宽,因为它向下传播的尘埃密度减小。导出了一个修正的kdv - burger方程,并用于对结果提供理论解释,包括幅度和宽度变化的幂律缩放作为背景密度的函数。
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