半经典和量子输运模拟的粒子网格技术

P. Schwaha, M. Nedjalkov, S. Selberherr, I. Dimov
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引用次数: 0

摘要

利用经典或量子权重的粒子模拟技术通常涉及用于计算平均值的相空间网格。通过对方差高度敏感的实验,研究了备选粒子网格模拟策略的特性。它是由受声子散射的纠缠电子态的精细结构提供的。由于演化过程描述了退相干和从量子到经典的跃迁,我们的分析涉及两种输运机制。基于粒子随机湮灭的算法比集成蒙特卡罗方法具有更好的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Particle-grid techniques for semiclassical and quantum transport simulations
Particle simulation techniques utilizing classical or quantum weights commonly involve a phase space grid for the calculation of averages. Properties of alternative particle-grid simulation strategies are investigated by using an experiment highly sensitive to variance. It is provided by the fine structure of entangled electron states subject to scattering with phonons. As the process of evolution describes decoherence and transition from quantum to classical our analysis concerns both transport regimes. An algorithm based on randomization-annihilation of particles shows better performance than an Ensemble Monte Carlo method.
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