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On-demand transfer of trapped photons on a chip

机译:捕获的光子按需转移到芯片上

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摘要

Photonic crystal nanocavities, which have modal volumes of the order of a cubic wavelength in the material, are of great interest as flexible platforms for manipulating photons. Recent developments in ultra-high quality factor nanocavities with long photon lifetimes have encouraged us to develop an ultra-compact and flexible photon manipulation technology where photons are trapped in networks of such nanocavities. The most fundamental requirement is the on-demand transfer of photons to and from the trapped states of arbitrary nanocavities. We experimentally demonstrate photon transfer between two nearly resonant nanocavities at arbitrary positions on a chip, triggered by the irradiation of a third nonresonant nanocavity using an optical control pulse. We obtain a high transfer efficiency of ~90% with a photon lifetime of ~200 ps.
机译:作为用于操纵光子的柔性平台,在材料中具有立方波长量级的模态体积的光子晶体纳米腔引起了人们的极大兴趣。光子寿命长的超高质量因子纳米腔的最新发展鼓励我们开发一种超紧凑和灵活的光子操纵技术,其中光子被困在此类纳米腔的网络中。最基本的要求是将光子按需转移到任意纳米腔的捕获态中或从中捕获。我们通过实验证明了在芯片上任意位置的两个近乎共振的纳米腔之间的光子转移,是由使用光控制脉冲的第三个非共振纳米腔的照射触发的。我们获得约90%的高传输效率,光子寿命约为200 ps。

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