Time-Resolved Mode Space based Quantum-Liouville type Equations applied onto DGFETs

L. Schulz, D. Schulz
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引用次数: 4

Abstract

The investigation of a time-resolved quantum transport analysis is a major issue for the future progress in engineering tailored nanoelectronic devices. In this contribution, the time dependence is addressed along with the single-time formulation of quantum mechanics based on the von-Neumann equation in center-mass coordinates. This equation is investigated utilizing a distinct set of basis functions leading to so-called Quantum-Liouville type equations, which are combined with the mode space approximation to investigate the time-resolved behavior of double gate field effect transistors including the self-consistent Hartree potential.
基于时间分辨模式空间的量子-刘维尔型方程在dgfet上的应用
时间分辨量子输运分析的研究是未来纳米电子器件工程发展的主要问题。在这一贡献中,时间依赖性与基于质心坐标中的冯-诺伊曼方程的量子力学单时间公式一起得到了解决。利用一组不同的基函数来研究该方程,从而得出所谓的量子- liouville型方程,该方程与模空间近似相结合,研究了双栅场效应晶体管的时间分辨行为,包括自一致哈特里势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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