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Mathematical modeling and computation of the optical response from nanostructures.

机译:纳米结构光学响应的​​数学建模和计算。

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摘要

This dissertation studies the computational modeling for nanostructures in response to external electromagnetic fields. Light-matter interactions on nanoscale are at the heart of nano-optics. To fully characterize the optical interactions with nanostructures quantum electrodynamics (QED) must be invoked, however, the required extremely intense computation and analysis prohibit QED from applications in nano-optics. To avoid the expensive computations and be able to seize the essential quantum effects a semiclassical model is developed. The wellposedness of the model partial differential equations is established. Emphasis is placed on the optical interactions with an individual nanostructure, excitons and biexcitons effects and finite-size effects are investigated.;The crucial step of our model is to couple the electromagnetic fields with the motion of the excited particles to yield a new dielectric constant which contains quantum effects of interest. A novel feature of the dielectric constant is the wavevector-dependence which leads to a multi-wave propagation inside the medium. Additional boundary conditions are proposed to deal with this situation. We proceed with incorporating this dielectric constant to Maxwell's equations, and by solving a scattering problem the quantum effects can be captured in the scattered spectra.
机译:本文研究了响应外部电磁场的纳米结构的计算模型。纳米级的光-物质相互作用是纳米光学的核心。为了充分表征与纳米结构的光学相互作用,必须调用量子电动力学(QED),但是,所需的极高强度的计算和分析禁止QED应用于纳米光学。为了避免昂贵的计算并能够抓住基本的量子效应,开发了半经典模型。建立了模型偏微分方程的适定性。重点在于与单个纳米结构的光学相互作用,激子和双激子效应以及有限尺寸效应。;我们模型的关键步骤是将电磁场与受激粒子的运动耦合以产生新的介电常数其中包含感兴趣的量子效应。介电常数的一个新颖特征是波矢量相关性,导致介质内部发生多波传播。建议使用其他边界条件来处理这种情况。我们将这个介电常数纳入麦克斯韦方程,并通过解决散射问题,可以在散射光谱中捕获量子效应。

著录项

  • 作者

    Sun, Yuanchang.;

  • 作者单位

    Michigan State University.;

  • 授予单位 Michigan State University.;
  • 学科 Mathematics.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 100 p.
  • 总页数 100
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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