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A new approach to solve the Boltzmann-Langevin equation for fermionic systems

机译:求解费米电子系统的玻尔兹曼-朗文方程的新方法

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摘要

We present a new method to introduce phase-space fluctuations in transport theories, corresponding to a full implementation of the Boltzmann-Langevin equation for fermionic systems. It is based on the procedure originally developed by Bauer et al. for transport codes employing the test particle method. In the new procedure, the Pauli principle is carefully checked, leading to a good reproduction of the correct fluctuations in the "continuum limit" (h -> 0). Accurate tests are carried out in one and two dimensional idealized systems, and finally results for a full 3D application are shown. We stress the reliability of this method, which can be easily plugged into existing transport codes using test particles, and its general applicability to systems characterized by instabilities, like for instance multi fragmentation processes. (c) 2008 Elsevier B.V. All rights reserved.
机译:我们提出了一种在传输理论中引入相空间涨落的新方法,该方法对应于费米电子系统的玻耳兹曼-兰格文方程的完整实现。它基于Bauer等人最初开发的程序。使用测试粒子方法的运输代码。在新程序中,仔细检查了保利原理,从而很好地再现了“连续极限”(h-> 0)中的正确波动。在一维和二维理想化系统中进行了准确的测试,最后显示了完整3D应用程序的结果。我们强调此方法的可靠性,该方法可以使用测试粒子轻松插入现有的传输代码中,并且一般适用于以不稳定性为特征的系统,例如多片段化过程。 (c)2008 Elsevier B.V.保留所有权利。

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