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Single photon emission from plasma treated 2D hexagonal boron nitride

机译:从等离子体处理2 d单光子发射六方氮化硼

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摘要

Artificial atomic systems in solids are becoming increasingly important building blocks in quantum information processing and scalable quantum nanophotonic networks. Amongst numerous candidates, 2D hexagonal boron nitride has recently emerged as a promising platform hosting single photon emitters. Here, we report a number of robust plasma and thermal annealing methods for fabrication of emitters in tape-exfoliated hexagonal boron nitride (hBN) crystals. A two-step process comprising Ar plasma etching and subsequent annealing in Ar is highly robust, and yields an eight-fold increase in the concentration of emitters in hBN. The initial plasma-etching step generates emitters that suffer from blinking and bleaching, whereas the two-step process yields emitters that are photostable at room temperature with emission wavelengths greater than similar to 700 nm. Density functional theory modeling suggests that the emitters might be associated with defect complexes that contain oxygen. This is further confirmed by generating the emitters via annealing hBN in air. Our findings advance the present understanding of the structure of quantum emitters in hBN and enhance the nanofabrication toolkit needed to realize integrated quantum nanophotonic circuits.
机译:人工固体原子系统在量子越来越重要的构建块信息处理和可伸缩的量子纳米光子网络。候选人,二维六角氮化硼最近成为一个有前途的承载平台单光子发射。强劲的等离子体和热退火方法为制造tape-exfoliated发射器六角氮化硼(hBN)晶体。包括Ar等离子蚀刻和两步过程随后的退火Ar是非常健壮的,产量增加了8倍的浓度在hBN发射器。等离子刻蚀步骤生成排放国遭受闪烁和漂白,而两步过程收益率的发射器在室温下photostable发射波长大于类似于700海里。密度泛函理论建模表明,发射器可能与缺陷有关复合物含有氧气。确认生成发射器通过在空气中退火hBN。目前对量子结构的理解发射器hBN和提高纳米加工工具箱需要实现集成量子纳米光子电路。

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