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Reduced formulation and efficient algorithm for the determination of equilibrium composition and partition functions of ideal and nonideal complex plasma mixtures

机译:确定理想和非理想复杂血浆混合物的平衡组成和分配函数的简化公式和高效算法

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摘要

The system of coupled nonlinear Saha equations supplemented by electroneutrality and conservation of nuclei for complex plasma mixtures is reformulated into a reduced form, which allows the development of an efficient numerical algorithm to solve the set of nonlinear equations. The efficient algorithm is based on the solution of an equivalent single transcendental equation. Nonideality corrections have been taken into consideration in terms of depression of ionization potentials and truncated partition functions. Implementing this simple efficient methodology simplifies the problem and considerably reduces the computational effort needed to compute the detailed plasma composition for different cases. The algorithm is analytically known to be safe, fast, and efficient. It also shows no numerical instabilities, no convergence problems, and no accuracy limitations or lack of change problems, which have been reported in the literature. A nontrivial sample problem has been worked in detail showing the usefulness of the method for applied and industrial plasma physicists. Effects of the nonideality corrections and the exclusion of excited states are quantified and presented. A criterion for the validity of the assumption of local thermodynamic equilibrium is applied to the results from the sample problem to show the region of the temperature-density phase space over which the assumption is valid.
机译:耦合了非线性Saha方程组的系统,将复杂的等离子体混合物的电子中性和核守恒性加以补充,重新构造为简化形式,这允许开发一种有效的数值算法来求解非线性方程组。高效算法基于等效单先验方程的解。就降低电离电势和缩短分配功能而言,已考虑了非理想校正。实施这种简单有效的方法可以简化问题,并显着减少为不同情况计算详细血浆成分所需的计算量。据分析,该算法是安全,快速和高效的。它也没有显示数值上的不稳定性,没有收敛问题,没有精度限制或没有变化问题,这在文献中已有报道。已经详细研究了一个非平凡的样本问题,显示了该方法对应用和工业等离子体物理学家的有用性。量化并介绍了非理想校正和排除激发态的影响。将局部热力学平衡假设的有效性准则应用于样本问题的结果,以显示假设有效的温度密度相空间区域。

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