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光谱扩散对六方氮化硼中单个量子发射体相干特性的影响

Effect of Spectral Diffusion on the Coherence Properties of a Single Quantum Emitter in Hexagonal Boron Nitride.

作者信息

Spokoyny Boris, Utzat Hendrik, Moon Hyowon, Grosso Gabriele, Englund Dirk, Bawendi Moungi G

机构信息

Department of Chemistry , Massachusetts Institute of Technology , 77 Massachusetts Avenue , Cambridge , Massachusetts 02139 , United States.

Department of Electrical Engineering , Massachusetts Institute of Technology , 77 Massachusetts Avenue , Cambridge , Massachusetts 02139 , United States.

出版信息

J Phys Chem Lett. 2020 Feb 20;11(4):1330-1335. doi: 10.1021/acs.jpclett.9b02863. Epub 2020 Feb 4.

Abstract

Quantum emitters capable of producing single photons on-demand with high color purity are the building blocks of emerging schemes in secure quantum communications, quantum computing, and quantum metrology. Such solid-state systems, however, are usually prone to effects of spectral diffusion (SD), i.e., fast modulation of the emission wavelength due to the presence of localized, fluctuating electric fields. Two-dimensional materials are especially vulnerable to SD by virtue of the proximity of the emitters to the outside environment. In this study we report measurements of SD in a single hexagonal boron nitride (hBN) quantum emitter on the nanosecond to second time scales using photon correlation Fourier spectroscopy. We demonstrate that the spectral diffusion dynamics can be modeled by a two-component Gaussian random jump model, suggesting multiple sources of local fluctuations. We provide a lower limit of ∼0.13 for the ratio of the emitter's coherence time () to twice its radiative lifetime (2) when it is measured on submicrosecond time scales. These results suggest that attaining transform-limited line widths could be achieved with moderate enhancement of the radiative rate. Moreover, the complex SD dynamics identified in our work inspires further exploration of the dephasing mechanisms in hBN as a viable quantum emitter platform.

摘要

能够按需产生高色纯度单光子的量子发射器是新兴的安全量子通信、量子计算和量子计量方案的基石。然而,这类固态系统通常容易受到光谱扩散(SD)效应的影响,即由于存在局部波动电场而导致发射波长的快速调制。二维材料由于发射器与外部环境接近,尤其容易受到SD的影响。在本研究中,我们报告了使用光子相关傅里叶光谱法在纳秒到秒的时间尺度上对单个六方氮化硼(hBN)量子发射器中的SD进行的测量。我们证明,光谱扩散动力学可以用双组分高斯随机跳跃模型来建模,这表明存在多种局部波动源。当在亚微秒时间尺度上测量时,我们给出了发射器的相干时间()与两倍辐射寿命(2)之比的下限约为0.13。这些结果表明,通过适度提高辐射率可以实现达到变换极限线宽。此外,我们工作中确定的复杂SD动力学激发了对hBN作为可行量子发射器平台的退相机制的进一步探索。

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