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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Results on the energy-relaxation rates of dense two-temperature aluminum, carbon, and silicon plasmas close to liquid-metal conditions - art. no. 035401
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Results on the energy-relaxation rates of dense two-temperature aluminum, carbon, and silicon plasmas close to liquid-metal conditions - art. no. 035401

机译:接近液态金属条件的致密两温铝,碳和硅等离子体的能量弛豫速率的结果-艺术。没有。 035401

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摘要

We present results for the electron-ion energy relaxation coupling constants g(ei)(T-e, T-i, kappa) for aluminum, carbon, and silicon plasmas at several electron and ion temperatures T-i, T-e of experimental interest. The calculations use the Fermi golden rule and the Landau-Spitzer model valid at weak electron-ion coupling, as well as the coupled-mode approach suitable for strong coupling. A physically motivated simple derivation of the coupled-mode energy relaxation formula for two-component charged fluids is presented. While the commonly used weak-coupling theories predict relaxation constants relatively independent of the ion temperature, the strong-coupling theory predicts energy relaxation constants that become smaller by an order of magnitude as the ion temperature is lowered. [References: 13]
机译:我们介绍了在几个实验温度下电子,离子温度T-i,T-e下的铝,碳和硅等离子体的电子-离子能量弛豫耦合常数g(ei)(T-e,T-i,kappa)的结果。计算使用费米黄金法则和适用于弱电子-离子耦合的朗道-斯皮策模型,以及适用于强耦合的耦合模式方法。提出了一种基于物理动机的两组分带电流体耦合模式能量弛豫公式的简单推导。尽管常用的弱耦合理论预测的弛豫常数相对独立于离子温度,但强耦合理论预测的能量弛豫常数将随着离子温度的降低而减小一个数量级。 [参考:13]

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