Single photon emitter deterministically coupled to a topological corner state.

IF 19.4 1区 物理与天体物理 Q1 Physics and Astronomy Light, science & applications Pub Date : 2024-01-17 DOI:10.1038/s41377-024-01377-6
Mujie Rao, Fulong Shi, Zhixuan Rao, Jiawei Yang, Changkun Song, Xiaodong Chen, Jianwen Dong, Ying Yu, Siyuan Yu
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Abstract

Incorporating topological physics into the realm of quantum photonics holds the promise of developing quantum light emitters with inherent topological robustness and immunity to backscattering. Nonetheless, the deterministic interaction of quantum emitters with topologically nontrivial resonances remains largely unexplored. Here we present a single photon emitter that utilizes a single semiconductor quantum dot, deterministically coupled to a second-order topological corner state in a photonic crystal cavity. By investigating the Purcell enhancement of both single photon count and emission rate within this topological cavity, we achieve an experimental Purcell factor of Fp = 3.7. Furthermore, we demonstrate the on-demand emission of polarized single photons, with a second-order autocorrelation function g(2)(0) as low as 0.024 ± 0.103. Our approach facilitates the customization of light-matter interactions in topologically nontrivial environments, thereby offering promising applications in the field of quantum photonics.

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与拓扑角态确定耦合的单光子发射器。
将拓扑物理学纳入量子光子学领域,有望开发出具有固有拓扑稳健性和抗反向散射能力的量子光发射器。然而,量子发射器与拓扑非琐碎共振的确定性相互作用在很大程度上仍未得到探索。在这里,我们展示了一种单光子发射器,它利用单个半导体量子点,与光子晶体腔中的二阶拓扑角态确定性耦合。通过研究该拓扑腔内单光子计数和发射率的珀塞尔增强,我们获得了 Fp = 3.7 的实验珀塞尔因子。此外,我们还证明了偏振单光子的按需发射,其二阶自相关函数 g(2)(0) 低至 0.024 ± 0.103。我们的方法有助于在拓扑学上非难环境中定制光-物质相互作用,从而为量子光子学领域提供了广阔的应用前景。
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来源期刊
CiteScore
27.00
自引率
2.60%
发文量
331
审稿时长
20 weeks
期刊介绍: Light: Science & Applications is an open-access, fully peer-reviewed publication.It publishes high-quality optics and photonics research globally, covering fundamental research and important issues in engineering and applied sciences related to optics and photonics.
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Research progress on aero-optical effects of hypersonic optical window with film cooling. Highly-efficient (>70%) and Wide-spectral (400-1700 nm) sub-micron-thick InGaAs photodiodes for future high-resolution image sensors. Extended-depth of field random illumination microscopy, EDF-RIM, provides super-resolved projective imaging. Publisher Correction: Photon shifting and trapping in perovskite solar cells for improved efficiency and stability. Electrically tunable planar liquid-crystal singlets for simultaneous spectrometry and imaging.
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