Efficient calculation of the two-dimensional Wigner potential

P. Ellinghaus, M. Nedjalkov, S. Selberherr
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引用次数: 3

Abstract

The solution of the two-dimensional (2D) Wigner equation has become numerically feasible in recent times, using the Monte Carlo method fortified with the notion of signed particles. The calculation of the Wigner potential (WP) in these 2D simulations consumes a considerable part of the computation time. A reduction of the latter is therefore very desirable, in particular, if self-consistent solutions are pursued, where the WP must be recalculated many times. An algorithm is introduced here - named box discrete Fourier transform (BDFT) - that reduces the computational effort roughly by a factor of five.
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二维维格纳势的有效计算
利用蒙特卡罗方法和符号粒子的概念,二维(2D)维格纳方程的解在最近已经成为数值上可行的。在这些二维模拟中,Wigner势(WP)的计算占用了相当一部分计算时间。因此,减少后者是非常可取的,特别是如果追求自洽的解决方案,则必须多次重新计算WP。本文介绍了一种称为盒离散傅里叶变换(BDFT)的算法,它将计算量减少了大约五倍。
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