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首页> 外文期刊>Physical review letters >Observation of Nonlinear Optical Interactions of Ultralow Levels of Light in a Tapered Optical Nanofiber Embedded in a Hot Rubidium Vapor
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Observation of Nonlinear Optical Interactions of Ultralow Levels of Light in a Tapered Optical Nanofiber Embedded in a Hot Rubidium Vapor

机译:嵌入热Hot蒸气的锥形光学纳米纤维中超低水平光的非线性光学相互作用的观察

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摘要

We report the observation of low-light level optical interactions in a tapered optical nanofiber (TNF) embedded in a hot rubidium vapor. The small optical mode area plays a significant role in the optical properties of the hot vapor Rb-TNF system, allowing nonlinear optical interactions with nW level powers even in the presence of transit-time dephasing rates much larger than the intrinsic linewidth. We demonstrate nonlinear absorption and V-type electromagnetically induced transparency with cw powers below 10 nW, comparable to the best results in any Rb-optical waveguide system. The good performance and flexibility of the Rb-TNF system makes it a very promising candidate for ultralow power resonant nonlinear optical applications.
机译:我们报告了嵌入热rub蒸气中的锥形光学纳米纤维(TNF)的低光水平光学相互作用的观察。较小的光学模式区域在热蒸气Rb-TNF系统的光学特性中起着重要作用,即使在存在比实际线宽大得多的渡越时间移相速率的情况下,也可以与nW级功率进行非线性光学相互作用。我们展示了非线性吸收和C型功率低于10 nW的V型电磁感应透明性,可与任何Rb光学波导系统中的最佳结果相媲美。 Rb-TNF系统的良好性能和灵活性使其成为超低功率谐振非线性光学应用的非常有希望的候选者。

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