首页> 外文会议>Conference on quantum dots, particles, and nanoclusters VI; 20090125-28; San Jose, CA(US) >Photonic emitters and circuits based on colloidal quantum dot composites
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Photonic emitters and circuits based on colloidal quantum dot composites

机译:基于胶体量子点复合材料的光子发射器和电路

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We discuss our work on light emitters and photonic circuits realized using colloidal quantum dot composites. Specifically we will report our recent work on flexible microcavity laser, microdisk emitters and integrated active -passive waveguides. The entire microcavity laser structure was realized using spin coating and consisted of an all-polymer distributed Bragg reflector with a poly-vinyl carbazole cavity layer embedded with InGaP/ZnS colloidal quantum dots. These microcavities can be peeled off the substrate yielding a flexible structure that can conform to any shape and whose emission spectra can be mechanically tuned. The microdisk emitters and the integrated waveguide structures were realized using soft lithography and photo-lithography, respectively and were fabricated using a composite consisting of quantum dots embedded in SU8 matrix. Finally, we will discuss the effect of the host matrix on the optical properties of the quantum dots using results of steady-state and time-resolved luminescence measurements. In addition to their specific functionalities, these novel device demonstrations and their development present a low cost alternative to the traditional photonic device fabrication techniques.
机译:我们讨论了关于使用胶体量子点复合材料实现的光发射器和光子电路的工作。具体来说,我们将报告我们在柔性微腔激光器,微盘发射器和集成有源-无源波导方面的最新工作。整个微腔激光器结构是通过旋涂实现的,它由全聚合物分布的布拉格反射器组成,该反射器带有嵌入有InGaP / ZnS胶体量子点的聚乙烯咔唑腔层。可将这些微腔从基材上剥离,以产生可适应任何形状的挠性结构,并且可对发射光谱进行机械调整。微盘发射器和集成波导结构分别使用软光刻和光刻技术实现,并使用由嵌入SU8矩阵中的量子点组成的复合材料制成。最后,我们将使用稳态和时间分辨的发光测量结果来讨论基质对量子点光学特性的影响。除了它们的特定功能外,这些新颖的器件演示及其开发为传统的光子器件制造技术提供了一种低成本的替代方案。

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