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首页> 外文期刊>Journal of Computational Electronics >Quantum noise from a Bohmian perspective: fundamental understanding and practical computation in electron devices
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Quantum noise from a Bohmian perspective: fundamental understanding and practical computation in electron devices

机译:玻姆电阻视角的量子噪声:电子设备的基本知识和实用计算

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摘要

In the literature, the study of electron transport in quantum devices is mainly devoted to DC properties. The fluctuations of the electrical current around these DC values, the so-called quantum noise, are much less analyzed. The computation of quantum noise is intrinsically linked (by temporal correlations) to our ability to understand/compute the time-evolution of a quantum system that is measured several times. There are several quantum theories that provide different (but empirically equivalent) ways of understanding/computing the perturbation of the wave function when it is measured. In this work, quantum noise associated to an electron impinging upon a semitransparent barrier is explained using Bohmian mechanics (which deals with wave functions and point-like particles). From this result, the fundamental understanding and practical computation of quantum noise with Bohmian trajectories are discussed. Numerical simulations of low and high frequency features of quantum shot noise in a resonant tunneling diode are presented (through the BITLLES simulator), showing the usefulness of the Bohmian approach.
机译:在文献中,量子器件中电子传输的研究主要致力于直流特性。围绕这些DC值的电流波动(所谓的量子噪声)的分析要少得多。量子噪声的计算与时间的内在联系(通过时间相关性)与我们理解/计算多次测量的量子系统的时间演化的能力有关。有几种量子理论提供了不同的(但经验上等效)的方式来理解/计算波动函数在被测量时的扰动。在这项工作中,使用Bohmian力学(涉及波函数和点状粒子)解释了与撞击在半透明势垒上的电子有关的量子噪声。从这一结果出发,讨论了具有玻姆氏轨迹的量子噪声的基本理解和实际计算。提出了一个共振隧穿二极管中量子散粒噪声的低频和高频特征的数值模拟(通过BITLLES模拟器),表明了Bohmian方法的有用性。

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