Optical Repumping of Resonantly Excited Quantum Emitters in Hexagonal Boron Nitride

Simon J U White, Ngoc M H Duong, A. Solntsev, Je‐Hyung Kim, M. Kianinia, I. Aharonovich
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引用次数: 4

Abstract

Resonant excitation of solid-state quantum emitters enables coherent control of quantum states and generation of coherent single photons, which are required for scalable quantum photonics applications. However, these systems can often decay to one or more intermediate dark states or spectrally jump, resulting in the lack of photons on resonance. Here, we present an optical co-excitation scheme which uses a weak non-resonant laser to reduce transitions to a dark state and amplify the photoluminescence from quantum emitters in hexagonal boron nitride (hBN). Utilizing a two-laser repumping scheme, we achieve optically stable resonance fluorescence of hBN emitters and an overall increase of ON time by an order of magnitude compared to only resonant excitation. Our results are important for the deployment of atom-like defects in hBN as reliable building blocks for quantum photonic applications.
固体量子发射体的共振激发使量子态的相干控制和相干单光子的产生成为可能,这是可扩展量子光子学应用所必需的。然而,这些系统经常会衰减到一个或多个中间暗态或光谱跳变,导致共振光子的缺乏。在这里,我们提出了一种光学共激发方案,该方案使用弱非谐振激光来减少六方氮化硼(hBN)中量子发射体的暗态跃迁,并放大其光致发光。利用双激光泵浦方案,我们实现了hBN发射器的光学稳定共振荧光,并且与仅谐振激发相比,总体上增加了一个数量级的ON时间。我们的结果对于在hBN中部署原子样缺陷作为量子光子应用的可靠构建块具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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