论文标题
截短的金属式全向反射器:以95%效率的基本高斯模式收集单个光子
The Truncated Metallo-dielectric Omnidirectional Reflector: Collecting Single Photons in the Fundamental Gaussian Mode with 95% Efficiency
论文作者
论文摘要
我们提出了一种新型的天线结构,该结构从具有前所未有的效率的单个发射极的单个光子中汇集单个光子,从而将其转化为低差基的基本高斯模式。我们的设备依赖于创建全向光子带隙以抑制不必要的大角度发射并增强小角度缺陷引导模式发射的概念。通过实施有效的钢筋有限差分时间域方法,用于直观地说明,严格验证和优化新的光子收集策略。我们研究了一些天线设计,以涵盖制造过程或材料限制所带来的各种边界条件,从理论上讲,可以实现收集效率超过95%的基本高斯模式。我们的天线是宽带,对制造缺陷不敏感,并且与钻石中的各种固态发射器(例如有机分子,量子点和缺陷中心)兼容。单个发射极的单向和低差高斯模式发射可以实现各种光子量子计算机体系结构以及高效的光效率接口。
We propose a novel antenna structure which funnels single photons from a single emitter with unprecedented efficiency into a low-divergence fundamental Gaussian mode. Our device relies on the concept of creating an omnidirectional photonic bandgap to inhibit unwanted large-angle emission and to enhance small-angle defect-guided-mode emission. The new photon collection strategy is intuitively illustrated, rigorously verified and optimized by implementing an efficient body-of-revolution finite-difference time-domain method for in-plane dipole emitters. We investigate a few antenna designs to cover various boundary conditions posed by fabrication processes or material restrictions and theoretically demonstrate that collection efficiencies into the fundamental Gaussian mode exceeding 95% are achievable. Our antennas are broadband, insensitive to fabrication imperfections and compatible with a variety of solid-state emitters such as organic molecules, quantum dots and defect centers in diamond. Unidirectional and low-divergence Gaussian-mode emission from a single emitter may enable the realization of a variety of photonic quantum computer architectures as well as highly efficient light-matter interfaces.