论文标题

量子平均力动力学理论:在温度密集物质中的一般配方和对电子离子传输的应用

Quantum Mean-Force Kinetic Theory: General Formulation and Application to Electron-Ion Transport in Warm Dense Matter

论文作者

Rightley, Shane, Baalrud, Scott D.

论文摘要

我们提出了一种将血浆传输理论扩展到以中等库仑偶联和电子退化为特征的温暖密集物质(WDM)的方法。它基于最近提出的BBGKY层次结构的关闭,该结构从相关性偏离其平衡价值的偏离方面扩展,而不是相关性的强度。除第二项外,该动力学方程还包含对碰撞项的修改,该术语模拟了对状态方程的非理想贡献。明确的碰撞算子以半经典极限得出,该极限与Uehling-uhlenbeck方程相似,但散射是由平均力(PMF)的潜力介导的。作为演示,我们使用这种碰撞积分来评估密集等离子体中的温度和动量松弛率。我们获得了脱糖率和耦合依赖性的“库仑积分”,这些“库仑积分”代替了散射速率$ \lnλ$。我们还发现,与温度放松相比,退化影响动量松弛的方式有新的差异。最后,我们评估了在密度和温度范围内跨越经典至量子到量子到弱到强耦合跃迁的温度范围内的温度密度和温度范围内的电子离子弛豫率。将结果与从量子Landau-Fokker-Planck方程和Lee-More模型获得的Landau-Spitzer速率和速率进行了比较。我们发现,模型在退化和中等耦合方面显着不同,并将这种差异归因于各种模型如何处理Pauli阻断,相关性,大角度散射和衍射的物理。

We present an approach to extend plasma transport theory into the Warm Dense Matter (WDM) regime characterized by moderate Coulomb coupling and electron degeneracy. It is based on a recently proposed closure of the BBGKY hierarchy that expands in terms of the departure of correlations from their equilibrium value, rather than in terms of the strength of correlations. This kinetic equation contains modifications to the collision term in addition to a second term that models the non-ideal contributions to the equation of state. An explicit collision operator is derived in the semiclassical limit that is similar to that of the Uehling-Uhlenbeck equation, but where scattering is mediated by the potential of mean force (PMF). As a demonstration, we use this collision integral to evaluate temperature and momentum relaxation rates in dense plasmas. We obtain degeneracy- and coupling-dependent 'Coulomb integrals' that take the place of $\lnΛ$ in the scattering rates. We additionally find a novel difference in the way in which degeneracy influences momentum relaxation in comparison to temperature relaxation. Finally, we evaluate electron-ion relaxation rates for the case of warm dense deuterium over a range of density and temperature spanning the classical to quantum and weak to strong coupling transitions. Results are compared with the Landau-Spitzer rate and rates obtained from the quantum Landau-Fokker-Planck equation and Lee-More model. We find that the models diverge significantly in the degenerate and moderately coupled regime and attribute this difference to how the various models treat the physics of Pauli blocking, correlations, large-angle scattering, and diffraction.

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