2023•IEEE Transactions on Plasma ScienceRequires access

Rayleigh–Taylor Instability and Its Growth Rate in Complex Plasmas

Wei-Ping Zhang, Wen‐Shan Duan

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Abstract

Rayleigh–Taylor (RT) instability is studied in this article in an inhomogeneous complex plasma. It has been observed that RT instability may occur when the mass density of the dust particles exhibits inhomogeneity in certain regions. The growth rate of the RT instability increases as the perturbed wavelength decreases and also as the gravitational acceleration increases. Moreover, it is also found that the charged characteristics of dust fluids play an important role in suppressing the RT instability in complex plasmas. Our results have potential applications in complex plasmas.

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What this paper is about

Rayleigh–Taylor (RT) instability is studied in this article in an inhomogeneous complex plasma. It has been observed that RT instability may occur when the mass density of the dust particles exhibits inhomogeneity in certain regions. The growth rate of the RT instability increases as the perturbed wavelength decreases and also as the gravitational acceleration increases. Moreover, it is also found that the charged characteristics of dust fluids play an important role in suppressing the RT instability in complex plasmas. Our results have potential applications in complex plasmas.

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Available abstract

Rayleigh–Taylor (RT) instability is studied in this article in an inhomogeneous complex plasma. It has been observed that RT instability may occur when the mass density of the dust particles exhibits inhomogeneity in certain regions. The growth rate of the RT instability increases as the perturbed wavelength decreases and also as the gravitational acceleration increases. Moreover, it is also found that the charged characteristics of dust fluids play an important role in suppressing the RT instability in complex plasmas. Our results have potential applications in complex plasmas.

Key concepts: Instability, Rayleigh–Taylor instability, Two-stream instability, Plasma, Physics, Wavelength, Plasma instability, Rayleigh scattering

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