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Super low threshold plasmonic WGM lasing from an individual ZnO hexagonal microrod on an Au substrate for plasmon lasers

机译:超低阈值等离激元WGM激光在Au基板上从单个ZnO六角形微棒发射用于等离激元激光器

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摘要

We demonstrate an individual ZnO hexagonal microrod on the surface of an Au substrate which can become new sources for manufacturing miniature ZnO plasmon lasers by surface plasmon polariton coupling to whispering-gallery modes (WGMs). We also demonstrate that the rough surface of Au substrates can acquire a more satisfied enhancement of ZnO emission if the surface geometry of Au substrates is appropriate. Furthermore, we achieve high Q factor and super low threshold plasmonic WGM lasing from an individual ZnO hexagonal microrod on the surface of the Au substrate, in which Q factor can reach 5790 and threshold is 0.45 KW/cm2 which is the lowest value reported to date for ZnO nanostructures lasing, at least 10 times smaller than that of ZnO at the nanometer. Electron transfer mechanisms are proposed to understand the physical origin of quenching and enhancement of ZnO emission on the surface of Au substrates. These investigations show that this novel coupling mode holds a great potential of ZnO hexagonal micro- and nanorods for data storage, bio-sensing, optical communications as well as all-optic integrated circuits.
机译:我们展示了一个Au衬底表面上的单个ZnO六角形微棒,它可以成为通过表面等离子激元耦合到耳语画廊模式(WGM)来制造微型ZnO等离子体激元激光器的新来源。我们还证明,如果Au基板的表面几何形状合适,则Au基板的粗糙表面可以获得更满意的ZnO发射增强。此外,我们通过在Au衬底表面上的单个ZnO六角形微棒实现了高Q因子和超低阈值等离子体WGM激光发射,其中Q因子可以达到5790,阈值为0.45 KW / cm 2 这是迄今为止报道的ZnO纳米结构发射的最低值,至少是纳米ZnO的10倍。提出电子转移机理以了解淬灭和增强Au衬底表面上ZnO发射的物理起源。这些研究表明,这种新颖的耦合模式具有ZnO六角形微纳米棒和纳米棒的巨大潜力,可用于数据存储,生物传感,光通信以及全光集成电路。

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