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Photon pairs bi-directionally emitted from a resonant metasurface

机译:从共振超表面双向发射的光子对

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摘要

Metasurfaces are artificially structured surfaces able to control the properties of light at subwavelength scales. While, initially, they have been proposed as means to control classical optical fields, they are now emerging as nanoscale sources of quantum light, in particular of entangled photons with versatile properties. Geometric resonances in metasurfaces have been recently used to engineer the frequency spectrum of entangled photons, but the emission directivity was so far less studied. Here, we generate photon pairs via spontaneous parametric down conversion from a metasurface supporting a quasi-bound state in the continuum (BIC) leading to remarkable emission directivities. The pair generation rate is enhanced 67 times compared to the case of an unpat-terned film of the same thickness and material. At the wavelength of the quasi-BIC resonance, photons are mostly emitted backwards, while their partners, spectrally detuned by only 8 nm, are emitted forwards. This behavior demonstrates fine spectral splitting of entangled photons and their bi-directional emission, never before observed in nanoscale sources. We expect this work to be a starting point for the efficient demultiplexing of photons in nano-scale quantum optics.
机译:Metasurfaces人为结构化表面能够控制光的属性亚波长尺度。被建议作为手段来控制经典光学领域,他们现在成为纳米尺度的量子光源,特别是纠缠光子对的属性。几何metasurfaces的共鸣最近用于工程师频谱纠缠光子,但排放方向性是迄今为止研究较少。通过自发参量产生光子对转换从metasurface支持quasi-bound状态的连续(BIC)非凡的发射指向性。代率相比,增强了67倍的情况下unpat-terned电影相同的厚度和材料。quasi-BIC共振,光子主要是排放向后,而他们的伴侣,幽灵似地失谐只有8纳米,向前发射。演示的光谱分裂行为纠缠光子及其双向发射,从未观察到纳米级来源。点有效的多路分解的光子在纳米量子光学。

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