论文标题
低重复速率FS-LASER脉冲产生的局部氮呈现中心
Localized Nitrogen-Vacancy centers generated by low-repetition rate fs-laser pulses
论文作者
论文摘要
在钻石中的数百种杂质和缺陷中,氮呈现(NV)中心是最有趣的含量之一,它被用作量子技术和纳米传感的平台。传统上,合成钻石被高能电子或氮离子辐照,以产生这些颜色中心。为了精确定位NV中心,已提出FS-LASER辐照作为在钻石中生产空间定位的NV中心的另一种方法。但是,到目前为止,大多数研究都使用了高更改率FS-LASER系统。在这里,我们研究了辐射条件对NV $^ - $产生的影响。具体而言,我们从Ti:Sapphire激光放大器以1 kHz的重复速率以1 kHz的重复率在775 nm处使用150 fs脉冲时的脉冲通量,激光聚焦和脉冲数量。光学检测到的磁共振(ODMR)用于研究产生的NV中心,揭示了光谱中相当大的零场裂片,并指示在消融过程中产生的晶格菌株可能在量子信息应用中有害。
Among hundreds of impurities and defects in diamond, the nitrogen-vacancy (NV) center is one of the most interesting to be used as a platform for quantum technologies and nanosensing. Traditionally, synthetic diamond is irradiated with high-energy electrons or nitrogen ions to generate these color-centers. For precise positioning of the NV centers, fs-laser irradiation has been proposed as an alternative approach to produce spatially localized NV centers in diamond. However, most of the studies reported so far used high-repetition rate fs-laser systems. Here, we studied the influence of the irradiation conditions on the generation of NV$^-$. Specifically, we varied pulse fluence, laser focusing, and the number of pulses upon irradiation with 150 fs pulses at 775 nm from a Ti:sapphire laser amplifier operating at 1 kHz repetition rate. Optically Detected Magnetic Resonance (ODMR) was used to investigate the produced NV centers, revealing a sizeable zero-field splitting in the spectra and indicating the conditions in which the lattice strain produced in the ablation process may be deleterious for quantum information applications.