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首页> 外文期刊>Journal of physics, A. Mathematical and theoretical >Thermodynamic instability and the critical point of fine particle (dusty) plasmas: enhancement of density fluctuations and experimental conditions for observation
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Thermodynamic instability and the critical point of fine particle (dusty) plasmas: enhancement of density fluctuations and experimental conditions for observation

机译:细颗粒(尘土)等离子体的热力学不稳定性和临界点:密度波动的增加和观察的实验条件

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摘要

We analyze thermodynamics of fine particle (dusty) plasmas, regarding them as systems composed of charged particles with hard cores interacting via the repulsive Yukawa potential and the ambient plasma (of ions and electrons), taking the contribution of the latter properly into account. When the Coulomb coupling between fine particles becomes sufficiently strong, the isothermal compressibility of the whole system diverges and we have a phase separation and an associated critical point. The enhancement of long-wavelength density fluctuations near the critical point is shown. Experimental conditions of fine particle plasmas, densities and temperatures of components and the fine particle size are obtained corresponding to characteristic parameters around the critical point and the dependence on ion species and other factors is discussed. These phenomena will be observed in the bulk three-dimensional system which may be realized on the ground by somehow canceling the effect of gravity on fine particles. Experiments under the microgravity environment are naturally expected to provide a chance of observation.
机译:我们分析了细颗粒(尘土)等离子体的热力学,认为它们是由带电核和硬核通过排斥汤河势和周围等离子体(离子和电子)相互作用而构成的系统,并适当考虑了后者的贡献。当细颗粒之间的库仑耦合变得足够强时,整个系统的等温压缩性就会发生变化,并且我们会发生相分离和相关的临界点。显示了临界点附近长波长密度波动的增强。根据临界点附近的特征参数,获得了细颗粒等离子体的实验条件,组分的密度和温度以及细颗粒的大小,并讨论了对离子种类和其他因素的依赖性。这些现象将在整体三维系统中观察到,该三维系统可以通过某种方式抵消重力对细颗粒的影响而在地面上实现。微重力环境下的实验自然有望提供观察的机会。

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