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通过声子辅助激发在双层WSe₂中实现高纯度和稳定的单光子发射。

High-purity and stable single-photon emission in bilayer WSe via phonon-assisted excitation.

作者信息

Piccinini Claudia, Paralikis Athanasios, Neto José Ferreira, Madigawa Abdulmalik A, Wyborski Paweł, Remesh Vikas, Vannucci Luca, Gregersen Niels, Munkhbat Battulga

机构信息

Department of Electrical and Photonics Engineering, Technical University of Denmark, 2800 Kongens Lyngby, Denmark.

Institut für Experimentalphysik, Universität Innsbruck, 6020 Innsbruck, Austria.

出版信息

Commun Phys. 2025;8(1):158. doi: 10.1038/s42005-025-02080-7. Epub 2025 Apr 14.

Abstract

The excitation scheme is essential for single-photon sources, as it governs exciton preparation, decay dynamics, and the spectral diffusion of emitted photons. While phonon-assisted excitation has shown promise in other quantum emitter platforms, its proper implementation and systematic comparison with alternative excitation schemes have not yet been demonstrated in transition metal dichalcogenide (TMD) quantum emitters. Here, we investigate the impact of various optical excitation strategies on the single-photon emission properties of bilayer WSe quantum emitters. Based on our theoretical predictions for the exciton preparation fidelity, we compare the excitation via the longitudinal acoustic and breathing phonon modes to conventional above-band and near-resonance excitations. Under acoustic phonon-assisted excitation, we achieve narrow single-photon emission with a reduced spectral diffusion of 0.0129 nm, a 1.8-fold improvement over above-band excitation. Additionally, excitation through breathing-phonon mode yields a high purity of 0.947 ± 0.079  and reduces the decay time by over an order of magnitude, reaching (1.33 ± 0.04) ns. Our comprehensive study demonstrates the crucial role of phonon-assisted excitation in optimizing the performance of WSe-based quantum emitters, providing valuable insights for the development of single-photon sources for quantum photonics applications.

摘要

激发方案对于单光子源至关重要,因为它控制着激子的制备、衰减动力学以及发射光子的光谱扩散。虽然声子辅助激发在其他量子发射体平台上已显示出前景,但在过渡金属二硫族化物(TMD)量子发射体中,其正确实施以及与其他激发方案的系统比较尚未得到证实。在此,我们研究了各种光学激发策略对双层WSe量子发射体单光子发射特性的影响。基于我们对激子制备保真度的理论预测,我们将通过纵向声学和呼吸声子模式的激发与传统的带间和近共振激发进行了比较。在声子辅助激发下,我们实现了窄单光子发射,光谱扩散降低至0.0129 nm,比带间激发提高了1.8倍。此外,通过呼吸声子模式激发可获得0.947±0.079的高纯度,并将衰减时间缩短了一个多数量级,达到(1.33±0.04) ns。我们的综合研究证明了声子辅助激发在优化基于WSe的量子发射体性能方面的关键作用,为量子光子学应用的单光子源开发提供了有价值的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f72/11996677/63f41179198f/42005_2025_2080_Fig1_HTML.jpg

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