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Wigner-function formalism applied to semiconductor quantum devices: Failure of the conventional boundary condition scheme

机译:Wigner函数形式主义应用于半导体量子器件:传统边界条件方案的失败

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摘要

The Wigner-function formalism is a well-known approach to model charge transport in semiconductor nanodevices. The primary goal of the present article is to point out and explain the intrinsic limitations of the conventional quantum-device modeling based on such a Wigner-function paradigm, providing a definite answer to open questions related to the application of the conventional spatial boundary condition scheme to the Wigner transport equation. Our analysis shows that (i) in the absence of energy dissipation (coherent limit) the solution of the Wigner equation equipped with given boundary conditions is not unique, and (ii) when dissipation and decoherence phenomena are taken into account via a relaxation-time approximation, the solution, although unique, is not necessarily a physical Wigner function
机译:Wigner函数形式主义是一种在半导体纳米器件中模拟电荷传输的著名方法。本文的主要目的是指出并解释基于这种Wigner函数范式的常规量子器件建模的固有局限性,从而为与常规空间边界条件方案的应用相关的开放性问题提供了明确的答案。到维格纳输运方程。我们的分析表明:(i)在没有能量耗散(相干极限)的情况下,配备给定边界条件的Wigner方程的解不是唯一的;以及(ii)通过松弛时间考虑了耗散和退相干现象时近似,虽然解是唯一的,但不一定是物理的维格纳函数

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