论文标题

通过倾斜双曲线超材料提取片上单光子的宽带增强

Broadband Enhancement of On-chip Single Photon Extraction via Tilted Hyperbolic Metamaterials

论文作者

Shen, Lian, Lin, Xiao, Shalaginov, Mikhail, Low, Tony, Zhang, Xianmin, Zhang, Baile, Chen, Hongsheng

论文摘要

芯片量子光子学的基本构建块是具有高重复率的单光子源,可以实现许多应用程序,例如高速量子通信和量子信息处理。理想情况下,这样的单个光子源将需要较大的片上光子提取衰减速率,即激发光子的速率在宽光谱范围内耦合到纳米纤维或波导中。但是,到目前为止,这个目标仍然难以捉摸。在这里,我们提出了一个可行的方案,以通过相对于纳米纤维的末端 - 超纤维的光轴来提高量子发射器的片上光子提取衰减速率。重要的是,显示的方案适用于在宽光谱范围内任意定向的量子发射器,例如可见光高达约80 nm。如果明智地倾斜,基础物理学依赖于双曲线超材料的新兴特征。也就是说,如果他们的受支持的高K(即波形)双曲线征素模式,如果它们的光轴未倾斜,则可以内在地局限于内部,现在可以将动量与纳米纤维的指导模式相匹配,更重要的是,它们几乎可以将其安全地融入纳米纤维中。

A fundamental building block for on-chip quantum photonics is a single-photon source with high repetition rates, which can enable many applications such as high-speed quantum communication and quantum information processing. Ideally, such single photon sources would then require a large on-chip photon extraction decay rate, namely the rate of excited photons coupled into nanofibers or waveguides, over a broad spectral range. However, this goal has remained elusive till date. Here we propose a feasible scheme to enhance the on-chip photon extraction decay rate of quantum emitters, through the tilting of the optical axis of hyperbolic metamaterials with respect to the end-facet of nanofibers. Importantly, the revealed scheme is applicable to arbitrarily orientated quantum emitters over a broad spectral range, e.g., up to ~80 nm for visible light. The underlying physics relies on the emerging unique feature of hyperbolic metamaterials if their optical axis is judiciously tilted. That is, their supported high-k (i.e., wavevector) hyperbolic eigenmodes, which are intrinsically confined inside them if their optical axis is un-tilted, can now become momentum-matched with the guided modes of nanofibers, and more importantly, they can safely couple into nanofibers almost without reflection.

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