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首页> 外文期刊>Journal of the Physical Society of Japan >Modeling Fine-Particle (Dusty) Plasmas and Charge-Stabilized Colloidal Suspensions as Inhomogeneous Yukawa Systems
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Modeling Fine-Particle (Dusty) Plasmas and Charge-Stabilized Colloidal Suspensions as Inhomogeneous Yukawa Systems

机译:将细颗粒(尘土)等离子体和电荷稳定的胶体悬浮液建模为不均匀的Yukawa系统

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摘要

As a basis for the structure and correlation analyses of fine-particle (dusty) plasmas and colloidal suspensions, the thermodynamic treatment of mixtures of macro- and microscopic charged particles is revisited and extended to finite systems with weak inhomogeneity within the adiabatic response of microscopic particles. The effective potential for macroscopic particles is shown to be composed of mutual Yukawa repulsions and a confining (attractive) Yukawa potential from their "shadow" (the average charge density of macroscopic particles with an inverted sign). Clarified is the relationship between two different approaches hitherto taken, the assumption of a parabolic one-body potential or of the flat one-body potential of finite extension. The enhanced charge neutrality due to the existence of macroscopic particles seems to suggest that the latter is closer to reality.
机译:作为细颗粒(尘土)等离子体和胶体悬浮液的结构和相关性分析的基础,重新讨论了宏观和微观带电粒子混合物的热力学处理,并将其扩展到微观粒子绝热响应内具有弱非均质性的有限系统。宏观粒子的有效电势由相互的Yukawa斥力和来自其“阴影”的有限(有吸引力的)Yukawa电势(带有反号的宏观粒子的平均电荷密度)组成。阐明了迄今为止采用的两种不同方法之间的关系,即抛物线一体势或有限扩展的平面一体势的假设。由于存在宏观粒子,增强的电荷中性似乎表明后者更接近现实。

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