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Fast and bright spontaneous emission of Er3+ ions in metallic nanocavity

机译:金属纳米腔中Er3 +离子的快速明亮自发发射

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By confining light in a small cavity, the spontaneous emission rate of an emitter can be controlled via the Purcell effect. However, while Purcell factors as large as similar to 10,000 have been predicted, actual reported values were in the range of about 10-30 only, leaving a huge gap between theory and experiment. Here we report on enhanced 1.54-mu m emission from Er3+ ions placed in a very small metallic cavity. Using a cavity designed to enhance the overall Purcell effect instead of a particular component, and by systematically investigating its photonic properties, we demonstrate an unambiguous Purcell factor that is as high as 170 at room temperature. We also observe >90 times increase in the far-field radiant flux, indicating that as much as 55% of electromagnetic energy that was initially supplied to Er3+ ions in the cavity escape safely into the free space in just one to two optical cycles.
机译:通过将光限制在一个小腔中,可以通过珀塞尔效应控制发射器的自发发射速率。但是,尽管已预测出赛赛尔因子大至接近10,000,但实际报告的值仅在约10-30的范围内,在理论和实验之间仍存在巨大差距。在这里,我们报告了放置在非常小的金属腔中的Er3 +离子的发射增强了1.54微米。使用设计用来增强总体Purcell效果的腔体而不是特定组件,并通过系统地研究其光子特性,我们证明了室温下的Purcell因子高达170。我们还观察到远场辐射通量增加了90倍以上,这表明最初提供给腔体中Er3 +离子的电磁能的55%在短短的一到两个光学周期内就安全地逸入了自由空间。

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