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

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Abstract

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 ~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-μm 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.

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Song, J. H., Kim, J., Jang, H., Yong Kim, I., Karnadi, I., Shin, J., … Lee, Y. H. (2015). Fast and bright spontaneous emission of Er3+ ions in metallic nanocavity. Nature Communications , 6. https://doi.org/10.1038/ncomms8080

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