六方氮化硼中蓝色量子发射体的光物理学

Ivan Zhigulin, Karin Yamamura, Viktor Iv'ady, A. Gale, J. Horder, C. Lobo, M. Kianinia, M. Toth, I. Aharonovich
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引用次数: 3

摘要

六方氮化硼(hBN)的色中心已成为集成量子光子学的有趣竞争者。在这项工作中,我们对在蓝色光谱范围内发射的hBN单发射器进行了详细的光物理分析。在不同的电子束辐照和退火条件下制备出以436nm为中心的窄带发光器件。光子统计和严格的光动力学分析揭示了发射器的势能级结构,这表明缺乏亚稳态,并得到理论分析的支持。潜在缺陷可以是hBN带隙下半部分缺陷状态被完全占据,带隙上半部分缺陷状态为空的电子结构。总的来说,我们的结果对于理解hBN中新兴蓝色量子发射体家族的光物理特性作为可扩展量子光子应用的潜在来源非常重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Photophysics of blue quantum emitters in hexagonal Boron Nitride
Colour centres in hexagonal boron nitride (hBN) have emerged as intriguing contenders for integrated quantum photonics. In this work, we present detailed photophysical analysis of hBN single emitters emitting at the blue spectral range. The emitters are fabricated by different electron beam irradiation and annealing conditions and exhibit narrow-band luminescence centred at 436 nm. Photon statistics as well as rigorous photodynamics analysis unveils potential level structure of the emitters, which suggests lack of a metastable state, supported by a theoretical analysis. The potential defect can have an electronic structure with fully occupied defect state in the lower half of the hBN band gap and empty defect state in the upper half of the band gap. Overall, our results are important to understand the photophysical properties of the emerging family of blue quantum emitters in hBN as potential sources for scalable quantum photonic applications.
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