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Resonant electron dynamics in open nano scale systems: A time-dependent non-equilibrium Green function approach.

机译:开放式纳米尺度系统中的共振电子动力学:一种与时间有关的非平衡格林函数方法。

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摘要

Research in nanometer length scale electronics is motivated by both a desire to understand the physics of such small systems and the technological advantages of implementing ever smaller more efficient devices. Ongoing experimental research is focused on characterizing the temporal response of nano-electronics to both weak and strong time-dependent classical driving fields. Theoretical models and methods are also being developed and implemented to explain these experiments. In particular, the weak classical driving field scenario offers the opportunity to efficiently model the response of the manifold of states to the driving field. This two variable (state energy and time) problem is the focus of this dissertation. A two-variable non-equilibrium Green function (NEGF) based time-dependent perturbation theory (TDPT) is developed and applied to small model two and four state systems. This formalism is used to study the dynamic interplay between a source drain bias and a resonant laser excitation that induces coherences and transfers population between states and out of the device. A unique effect in which laser induced population inversion between states brings about a reversal of current direction (absolute negative conductance) is reported. Finally, a one variable constant constant potential theory (CPT), is derived and compared to Landauer theory for simple systems.
机译:纳米长度规模电子学的研究既受了解这种小型系统的物理原理的渴望,又有实现更小更高效器件的技术优势。正在进行的实验研究集中于表征纳米电子学对弱和强的时间相关经典驱动场的时间响应。理论模型和方法也正在开发和实施以解释这些实验。特别是,弱的经典驾驶场场景为有效地建模状态流向驾驶场的响应提供了机会。这两个变量(状态能量和时间)问题是本文的重点。建立了基于二变量非平衡格林函数(NEGF)的时变扰动理论(TDPT),并将其应用于小模型二态和四态系统。这种形式主义被用来研究源漏偏置和共振激光激发之间的动态相互作用,该共振激发相干并将种群在状态之间转移并移出器件。报告了一种独特的效应,其中激光诱导的状态之间的种群反转导致电流方向的反转(绝对负电导)。最后,推导了一个单变量恒定恒势理论(CPT),并将其与Landauer理论进行了简单系统的比较。

著录项

  • 作者

    Prociuk, Alexander H.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Physics Theory.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 184 p.
  • 总页数 184
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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