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Semiconductor nanowires: Optical properties and all-optical switching.

机译:半导体纳米线:光学特性和全光开关。

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摘要

The optical properties of semiconductor nanowires are both important from a fundamental materials physics standpoint and necessary to understand in engineering applications: nanowire photovoltaic devices, sensors, and lasers, among others, could all benefit. Unfortunately, these optical properties are not easy to ascertain. Transmission times are short, in-coupling of white probe light is difficult, and the angle-resolved measurements typically used to determine material dispersion relations in bulk materials are hindered by diffraction effects at subwavelength nanowire end facets.;Here, we present a series of experimental techniques and theoretical models developed to study of the optical properties of active nanowire waveguides. Beginning with a technique for determining the waveguide dispersion of individual ZnSe nanowires, we demonstrate enhanced properties with respect to bulk material. After investigating propagation loss in individual CdS nanowires, the theoretical model was then refined to quantify the strength of light-matter coupling, where size-dependence was observed. The knowledge gained from these studies was put to use in the first demonstration of all-optical switching in individual semiconductor nanowires. The switch concept was then extended into an all-optical nanowire NAND gate. These developments highlight the importance of semiconductor nanowires as both model materials systems and novel devices.
机译:从基本材料物理学的角度来看,半导体纳米线的光学特性既重要,又在工程应用中必须理解:纳米线光伏器件,传感器和激光器等均可从中受益。不幸的是,这些光学性质不容易确定。传输时间短,白色探测光难以耦合,并且通常用于确定块状材料中材料色散关系的角度分辨测量受到亚波长纳米线端面上衍射效应的阻碍。开发了用于研究有源纳米线波导光学特性的实验技术和理论模型。从确定单个ZnSe纳米线的波导色散的技术开始,我们展示了相对于块状材料增强的性能。在研究了单个CdS纳米线中的传播损耗之后,然后对理论模型进行了改进,以量化光-物质耦合的强度,并观察到了尺寸依赖性。从这些研究中获得的知识被用于单个半导体纳米线中全光开关的首次演示。然后将开关概念扩展到全光纳米线“与非”门。这些发展突显了半导体纳米线作为模型材料系统和新型器件的重要性。

著录项

  • 作者

    Piccione, Brian.;

  • 作者单位

    University of Pennsylvania.;

  • 授予单位 University of Pennsylvania.;
  • 学科 Nanotechnology.;Engineering Materials Science.;Physics Optics.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 140 p.
  • 总页数 140
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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