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High-contrast switching and high-efficiency extracting for spontaneous emission based on tunable gap surface plasmon

机译:基于可调间隙表面等离子体激元的高对比度切换和高效率自发发射

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摘要

Controlling spontaneous emission at optical scale lies in the heart of ultracompact quantum photonic devices, such as on-chip single photon sources, nanolasers and nanophotonic detectors. However, achiving a large modulation of fluorescence intensity and guiding the emitted photons into low-loss nanophotonic structures remain rather challenging issue. Here, using the liquid crystal-tuned gap surface plasmon, we theoretically demonstrate both a high-contrast switching of the spontaneous emission and high-efficiency extraction of the photons with a specially-designed tunable surface plasmon nanostructures. Through varying the refractive index of liquid crystal, the local electromagnetic field of the gap surface plasmon can be greatly modulated, thereby leading to the swithching of the spontaneous emission of the emitter placed at the nanoscale gap. By optimizing the material and geometrical parameters, the total decay rate can be changed from 103γ0 to 8750γ0, [γ0 is the spontaneous emission rate in vacuum] with the contrast ratio of 85. Further more, in the design also enables propagation of the emitted photons along the low-loss phase-matched nanofibers with a collection efficiency of more than 40%. The proposal provides a novel mechanism for simultaneously switching and extracting the spontaneous emitted photons in hybrid photonic nanostructures, propelling the implementation in on-chip tunable quantum devices.
机译:在光学规模上控制自发发射是超紧凑型量子光子设备的核心,例如片上单光子源,纳米激光和纳米光子探测器。然而,实现荧光强度的大调制并将发射的光子引导到低损耗纳米光子结构中仍然是相当具有挑战性的问题。在这里,我们使用液晶调谐的间隙表面等离子体激元,从理论上证明了具有特殊设计的可调表面等离子体激元纳米结构的自发发射的高对比度转换和光子的高效提取。通过改变液晶的折射率,可以极大地调节间隙表面等离子体激元的局部电磁场,从而导致置于纳米级间隙的发射器的自发发射变干。通过优化材料和几何参数,总衰减率可以从103γ0更改为8750γ0,[γ0是真空中的自发发射率],对比度为85。此外,在设计中还可以使发射的光子传播沿着低损耗的相匹配纳米纤维,收集效率超过40%。该提议提供了一种同时切换和提取混合光子纳米结构中自发发射光子的新颖机制,推动了片上可调谐量子器件的实现。

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