论文标题

具有多功能成像金属的任意结构化量子排放

Arbitrary structured quantum emission with a multifunctional imaging metalens

论文作者

Li, Chi, Jang, Jaehyuck, Badloe, Trevon, Yang, Tieshan, Kim, Joohoon, Kim, Jaekyung, Nguyen, Minh, Maier, Stefan A., Rho, Junsuk, Ren, Haoran, Aharonovich, Igor

论文摘要

在多个自由度中,从单光子发射器中构造光发射对于朝着更高维度的量子信息处理非常重要。但是,量子光源对发射的传统控制取决于使用多个笨重的光学元素或功能有限的纳米结构谐振器,从而限制了多维裁缝的潜力。在这里,我们介绍了超薄极性束拆分金属蛋白在室温下量子排放的任意结构。由于在单个元原子水平上具有完整而独立的极化和相控制,因此设计的金属能够同时对硝化氢硼的超光线缺陷进行量子发射,并将任意波前的印记到源的正交极化状态。杂化量子金属可以同时操纵量子光源的多个自由度,包括方向性,极化和轨道角动量。在多个自由度下,量子发射的任意波前塑形可以释放固态SPE的全部潜力,以用作高级量子光子应用的高维量子源。

Structuring light emission from single-photon emitters in multiple degrees of freedom is of a great importance for quantum information processing towards higher dimensions. However, traditional control of emission from quantum light sources relies on the use of multiple bulky optical elements or nanostructured resonators with limited functionalities, constraining the potential of multi-dimensional tailoring. Here we introduce the use of an ultrathin polarisation-beam-splitting metalens for the arbitrary structuring of quantum emission at room temperature. Owing to the complete and independent polarisation and phase control at a single meta-atom level, the designed metalens enables simultaneous imaging of quantum emission from ultra-bright defects in hexagonal boron nitride and imprinting of an arbitrary wavefront onto orthogonal polarisation states of the sources. The hybrid quantum metalens enables simultaneous manipulation of multiple degrees of freedom of a quantum light source, including directionality, polarisation, and orbital angular momentum. The demonstrated arbitrary wavefront shaping of quantum emission in multiple degrees of freedom could unleash the full potential of solid-state SPEs for their use as high-dimensional quantum sources for advanced quantum photonic applications.

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