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Single-mode tunable laser emission in the single-exciton regime from colloidal nanocrystals

机译:胶态纳米晶体在单激发态下的单模可调激光发射

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摘要

Whispering-gallery-mode resonators have been extensively used in conjunction with different materials for the development of a variety of photonic devices. Among the latter, hybrid structures, consisting of dielectric microspheres and colloidal core/shell semiconductor nanocrystals as gain media, have attracted interest for the development of microlasers and studies of cavity quantum electrodynamic effects. Here we demonstrate single-exciton, single-mode, spectrally tuned lasing from ensembles of optical antenna-designed, colloidal core/shell CdSe/CdS quantum rods deposited on silica microspheres. We obtain single-exciton emission by capitalizing on the band structure of the specific core/shell architecture that strongly localizes holes in the core, and the two-dimensional quantum confinement of electrons across the elongated shell. This creates a type-II conduction band alignment driven by coulombic repulsion that eliminates non-radiative multi-exciton Auger recombination processes, thereby inducing a large exciton–bi-exciton energy shift. Their ultra-low thresholds and single-mode, single-exciton emission make these hybrid lasers appealing for various applications, including quantum information processing.
机译:耳语画廊模式谐振器已广泛与不同材料结合使用,以开发各种光子器件。在后者中,由介电微球和胶体核/壳半导体纳米晶体作为增益介质组成的混合结构引起了人们对微激光器的发展和腔量子电动力学效应研究的兴趣。在这里,我们从沉积在二氧化硅微球上的光学天线设计的胶体核/壳CdSe / CdS量子棒的集合体中展示了单激子,单模,光谱调谐的激光。我们通过利用特定的核/壳结构的能带结构来获得单激子发射,该结构强烈地定位了核中的空穴,并且整个细长壳上的电子都受到二维量子约束。这创建了由库伦排斥力驱动的II型导带对准,消除了非辐射多激子俄歇复合过程,从而引起了大的激子-双激子能量转移。它们的超低阈值和单模,单激子发射使这些混合激光器吸引了包括量子信息处理在内的各种应用。

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