论文标题

飞秒激光写作旋转缺陷中的六角硼

Femtosecond Laser Writing of Spin Defects in Hexagonal Boron Nitride

论文作者

Gao, Xingyu, Pandey, Siddhant, Kianinia, Mehran, Ahn, Jonghoon, Ju, Peng, Aharonovich, Igor, Shivaram, Niranjan, Li, Tongcang

论文摘要

宽带盖材料中的光学主动自旋缺陷在量子信息和量子传感中具有许多潜在的应用。二维层次的范德华材料中的自旋缺陷仅出现以进行研究。在这里,我们证明,可以通过飞秒激光照射产生六角形硼硼(HBN)中的可光化旋转集合。我们观察到由激光照射产生的HBN自旋缺陷的光学检测到的磁共振(ODMR)。我们表明,HBN中自旋缺陷的产生受到飞秒激光的脉搏能的强烈影响。当激光脉冲数小于几千时,脉冲数仅影响缺陷的密度,而不影响缺陷的类型。使用适当的激光参数,可以以很高的成功概率生成自旋缺陷。我们的工作提供了一种方便的方式,可以通过飞秒激光写作在HBN中创建旋转缺陷,这显示了量子技术的前景。

Optically active spin defects in wide-bandgap materials have many potential applications in quantum information and quantum sensing. Spin defects in two-dimensional layered van der Waals materials are just emerging to be investigated. Here we demonstrate that optically-addressable spin ensembles in hexagonal boron nitride (hBN) can be generated by femtosecond laser irradiation. We observe optically detected magnetic resonance (ODMR) of hBN spin defects created by laser irradiation. We show that the creation of spin defects in hBN is strongly affected by the pulse energy of the femtosecond laser. When the laser pulse number is less than a few thousand, the pulse number only affects the density of defects but not the type of defects. With proper laser parameters, spin defects can be generated with a high probability of success. Our work provides a convenient way to create spin defects in hBN by femtosecond laser writing, which shows promising prospects for quantum technologies.

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