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Polarization and Localization of Single-Photon Emitters in Hexagonal Boron Nitride Wrinkles

机译:六边形氮化硼皱折中单光子发射器的偏振和定位

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摘要

Color centers in two-dimensional hexagonal boron nitride (h-BN) have recently emerged as stable and bright single-photon emitters (SPEs) operating at room temperature. In this study, we combine theory and experiment to show that vacancy-based SPEs selectively form at nanoscale wrinkles in h-BN with its optical dipole preferentially aligned to the wrinkle direction. By using density functional theory calculations, we find that the wrinkle's curvature plays a crucial role in localizing vacancy-based SPE candidates and aligning the defect's symmetry plane to the wrinkle direction. By performing optical measurements on SPEs created in h-BN single-crystal flakes, we experimentally confirm the wrinkle-induced generation of SPEs and their polarization alignment to the wrinkle direction. Our results not only provide a new route to controlling the atomic position and the optical property of the SPEs but also revealed the possible crystallographic origin of the SPEs in h-BN, greatly enhancing their potential for use in solid-state quantum photonics and quantum information processing.
机译:最近在室温下工作的稳定和明亮的单光子发射器(SPES)的二维六边形氮化硼(H-BN)中的彩色中心。在这项研究中,我们将理论和实验结合在一起,表明基于空位的SPES在H-BN中的纳米级皱纹中选择性地形成其光学偶极子,优先对准皱纹方向。通过使用密度泛函理论计算,我们发现皱纹的曲率在本地化空位的SPE候选中起着至关重要的作用,并将缺陷的对称平面对准到皱纹方向。通过在H-BN单晶薄片上创建的SPE上进行光学测量,我们通过实验证实皱纹诱导的SPE产生和它们的偏振对准到皱纹方向。我们的结果不仅提供了控制原子位置和SPE的光学性能的新途径,而且还揭示了H-BN中的SPE的可能晶体起源,大大提高了它们在固态量子光子和量子信息中使用的可能性加工。

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