首页> 外文会议>Conference on quantum dots, particles, and nanoclusters VI; 20090125-28; San Jose, CA(US) >Engineered Nanostructures Exhibiting Enhanced Optical Nonlinearity
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Engineered Nanostructures Exhibiting Enhanced Optical Nonlinearity

机译:工程纳米结构表现出增强的光学非线性

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Because of their unique chemical and physical properties, nanometer-sized semiconductor materials have attracted broad attention in the fields of physics, chemistry, and biology. These capabilities are mainly due to the unusual dependence of the electronic and optical properties on quantum confinement, which for semiconductor materials restricts the particle size in the 1 to 10 nm range. We have fabricated and measured novel nanostructures of semiconductor quantum dots capped with surfactants and embedded in organic thin films that exhibit several orders of magnitude increase in their multiphoton cross-sections of absorption relative to semiconductor quantum dots capped with surfactants in solution or in other matrix materials. Large values of optical nonlinearity have been measured for CdS and CdSe quantum dots in these engineered nanostructures. We will discuss these findings within the context of theoretically proposed hybrid excitons in organic-inorganic nanostructures.
机译:由于其独特的化学和物理特性,纳米尺寸的半导体材料在物理,化学和生物学领域引起了广泛的关注。这些功能主要是由于电子和光学特性对量子限制的不寻常依赖性,对于半导体材料而言,其将粒径限制在1至10 nm范围内。我们已经制备并测量了覆盖有表面活性剂并嵌入有机薄膜的半导体量子点的新型纳米结构,相对于溶液或其他基质材料中覆盖有表面活性剂的半导体量子点,有机薄膜显示出其吸收的多光子截面增加了几个数量级。 。在这些工程纳米结构中,已针对CdS和CdSe量子点测量了较大的光学非线性值。我们将在有机无机纳米结构中理论上提出的混合激子的背景下讨论这些发现。

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