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Metal-coated semiconductor nanostructures and simulation of photon extraction and coupling to optical fibers for a solid-state single-photon source

机译:固态单光子源的金属包覆半导体纳米结构以及光子提取和耦合至光纤的模拟

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摘要

We have realized metal-coated semiconductor nanostructures for a stable and efficient single-photon source (SPS) and demonstrated improved single-photon extraction efficiency by the selection of metals and nanostructures. We demonstrate with finite-difference time-domain (FDTD) simulations that inclination of a pillar sidewall, which changes the structure to a nanocone, is effective in improving the photon extraction efficiency. We demonstrate how such nanocone structures with inclined sidewalls are fabricated with reactive ion etching. With the optimized design, a photon extraction efficiency to outer airside as high as ~97% generated from a quantum dot in a nanocone structure is simulated, which is the important step in realizing SPS on-demand operations. We have also examined the direct contact of such a metal-embedded nanocone structure with a single-mode fiber facet as a simple and practical method for preparing fiber-coupled SPS and demonstrated practical coupling efficiencies of ~16% with FDTD simulation.
机译:我们已经实现了用于稳定,高效的单光子源(SPS)的金属涂层半导体纳米结构,并通过选择金属和纳米结构证明了单光子提取效率的提高。我们通过有限差分时域(FDTD)模拟证明,将柱侧壁倾斜(将结构更改为纳米锥)可有效提高光子提取效率。我们演示了如何通过反应离子刻蚀来制造这种具有倾斜侧壁的纳米锥结构。通过优化设计,模拟了纳米锥结构中量子点产生的高达97%的光子向外界空气的提取效率,这是实现SPS按需操作的重要步骤。我们还研究了这种金属嵌入式纳米锥结构与单模光纤刻面的直接接触,这是制备光纤耦合SPS的一种简单实用的方法,并通过FDTD仿真证明了约16%的实用耦合效率。

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