论文标题

部分可观测时空混沌系统的无模型预测

Resonant Semiconductor Metasurfaces for Generating Complex Quantum States

论文作者

Santiago-Cruz, Tomás, Gennaro, Sylvain D., Mitrofanov, Oleg, Addamane, Sadhvikas, Reno, John, Brener, Igal, Chekhova, Maria V.

论文摘要

量子状态工程是量子光子技术的基石,主要依赖于自发的参数下调和四波混合,其中一个或两个泵光子衰减成光子对。这两种非线性效应都需要参与光子的动量保护(即相匹配),这极大地限制了所得量子状态的多功能性。非线性元信息由于其亚波长度的厚度,放松了这一约束并扩展了量子状态工程的边界。在这里,我们通过具有高质量共振的半导体元脉体中的自发参数下转换生成纠缠的光子。通过增强量子真空场,我们的元图在多个选定的波长下在狭窄的谐振带中增强了光子对的发射。由于节省宽松的动量,相同的共振几乎可以从泵的光子的几乎任何能量的泵光子生成。这使得可以生成复杂的频率 - 多头量子状态,特别是群集状态。我们的结果表明,元整日用于量子状态工程的多功能用途。

Quantum state engineering, the cornerstone of quantum photonic technologies, mainly relies on spontaneous parametric down-conversion and four-wave mixing, where one or two pump photons decay into a photon pair. Both these nonlinear effects require momentum conservation (i.e., phase-matching) for the participating photons, which strongly limits the versatility of the resulting quantum states. Nonlinear metasurfaces, due to their subwavelength thickness, relax this constraint and extend the boundaries of quantum state engineering. Here, we generate entangled photons via spontaneous parametric down-conversion in semiconductor metasurfaces with high-quality resonances. By enhancing the quantum vacuum field, our metasurfaces boost the emission of photon pairs within narrow resonance bands at multiple selected wavelengths. Due to the relaxed momentum conservation, the same resonances support photon pair generation from pump photons of practically any energy. This enables the generation of complex frequency-multiplexed quantum states, in particular cluster states. Our results demonstrate the multifunctional use of metasurfaces for quantum state engineering.

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