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Simulation of quantum transport in quantum devices with spatially varying effective mass

机译:具有有效变化空间质量的量子装置中量子传输的仿真

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The authors report progress in quantum-mechanical simulation based on the Wigner function model. An exact nonlocal formulation in the Wigner representation due to a spatially varying effective mass and its discretization for numerical calculation are discussed. To verify the validity of such a formulation, the current-voltage characteristics of resonant tunneling diodes are simulated to compare with the conventional Wigner function model. The authors also point out the importance of self-consistent calculation in the electrostatic potential for precise device simulation. The emphasize that the Wigner function model is superior to the alternative method based on the transmission probability method even for the static simulation of quantum transport.
机译:作者报告了基于Wigner函数模型的量子力学仿真的进展。讨论了由于空间有效质量变化而在Wigner表示中的精确非局部公式及其在数值计算中的离散化。为了验证这种公式的有效性,对谐振隧穿二极管的电流-电压特性进行了仿真,以与传统的维格纳函数模型进行比较。作者还指出了在静电势中自洽计算对于精确设备仿真的重要性。强调的是,即使对于量子输运的静态模拟,维格纳函数模型也优于基于传输概率方法的替代方法。

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