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首页> 外文期刊>Journal of Applied Physics >Feasibility, accuracy, and performance of contact block reduction method for multi-band simulations of ballistic quantum transport
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Feasibility, accuracy, and performance of contact block reduction method for multi-band simulations of ballistic quantum transport

机译:接触块减少方法在弹道量子传输多频带模拟中的可行性,准确性和性能

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Numerical utilities of the contact block reduction (CBR) method in evaluating the retarded Green’s function are discussed for 3D multi-band open systems that are represented by the atomic tight-binding (TB) and continuum k·p (KP) band model. It is shown that the methodology to approximate solutions of open systems, which has been already reported for the single-band effective mass model, cannot be directly used for atomic TB systems, since the use of a set of zinc blende crystal grids makes the inter-coupling matrix non-invertible. We derive and test an alternative with which the CBR method can be still practical in solving TB systems. This multi-band CBR method is validated by a proof of principles on small systems and also shown to work excellent with the KP approach. Further detailed analysis on the accuracy, speed, and scalability on high performance computing clusters is performed with respect to the reference results obtained by the state-of-the-art recursive Green’s function and wavefunction algorithm. This work shows that the CBR method could be particularly useful in calculating resonant tunneling features, but shows a limited practicality in simulating field effect transistors (FETs) when the system is described with the atomic TB model. Coupled to the KP model, however, the utility of the CBR method can be extended to simulations of nanowire FETs.
机译:对于以原子紧密结合(TB)和连续谱k·p(KP)带模型表示的3D多波段开放系统,讨论了接触块减少(CBR)方法在评估延迟格林函数方面的数值实用性。结果表明,已经针对单频带有效质量模型报道了近似开放系统解的方法,该方法不能直接用于原子TB系统,因为使用一组锌混合晶格可以实现耦合矩阵不可逆。我们推导并测试了一种替代方法,使CBR方法在解决结核病系统中仍然可行。这种多频带CBR方法已通过小型系统原理验证得到验证,并且与KP方法一起使用时效果很好。针对通过最新的递归格林函数和波动函数算法获得的参考结果,对高性能计算群集的准确性,速度和可伸缩性进行了进一步的详细分析。这项工作表明,CBR方法在计算谐振隧穿特征时可能特别有用,但是当用原子TB模型描述系统时,在模拟场效应晶体管(FET)方面显示出有限的实用性。然而,与KP模型耦合,CBR方法的实用性可以扩展到纳米线FET的仿真。

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