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体生长碳化硅中寿命受限发射体的检测探针光谱学

Check-probe spectroscopy of lifetime-limited emitters in bulk-grown silicon carbide.

作者信息

van de Stolpe G L, Feije L J, Loenen S J H, Das A, Timmer G M, de Jong T W, Taminiau T H

机构信息

QuTech, Delft University of Technology, Delft, The Netherlands.

Kavli Institute of Nanoscience Delft, Delft University of Technology, Delft, The Netherlands.

出版信息

npj Quantum Inf. 2025;11(1):31. doi: 10.1038/s41534-025-00985-3. Epub 2025 Feb 22.

Abstract

Solid-state single-photon emitters provide a versatile platform for exploring quantum technologies such as optically connected quantum networks. A key challenge is to ensure the optical coherence and spectral stability of the emitters. Here, we introduce a high-bandwidth 'check-probe' scheme to quantitatively measure (laser-induced) spectral diffusion and ionisation rates, as well as homogeneous linewidths. We demonstrate these methods on single V2 centres in commercially available bulk-grown 4H-silicon carbide. Despite observing significant spectral diffusion under laser illumination (≳GHz s), the optical transitions are narrow (~35 MHz), and remain stable in the dark (≳1 s). Through Landau-Zener-Stückelberg interferometry, we determine the optical coherence to be near-lifetime limited ( = 16.4(4) ns), hinting at the potential for using bulk-grown materials for developing quantum technologies. These results advance our understanding of spectral diffusion of quantum emitters in semiconductor materials, and may have applications for studying charge dynamics across other platforms.

摘要

固态单光子发射器为探索诸如光连接量子网络等量子技术提供了一个多功能平台。一个关键挑战是确保发射器的光学相干性和光谱稳定性。在这里,我们引入一种高带宽“检测-探测”方案,以定量测量(激光诱导的)光谱扩散和电离率,以及均匀线宽。我们在市售块状生长的4H-碳化硅中的单个V2中心上演示了这些方法。尽管在激光照射下观察到显著的光谱扩散(≳GHz·s),但光学跃迁很窄(约35 MHz),并且在黑暗中保持稳定(≳1 s)。通过朗道-齐纳-施图克尔贝格干涉测量法,我们确定光学相干性接近寿命限制( = 16.4(4) ns),这暗示了使用块状生长材料开发量子技术的潜力。这些结果推进了我们对半导体材料中量子发射器光谱扩散的理解,并且可能在研究其他平台上的电荷动力学方面有应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cfde/11846708/db29f272e4dd/41534_2025_985_Fig1_HTML.jpg

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