论文标题
与光学纳米纤维在纳米座中的硅接收中心的整合
Integration of silicon-vacancy centers in nanodiamonds with an optical nanofiber
论文作者
论文摘要
我们在实验上证明了纳米原子(SIV-NDS)与光学纳米纤维(ONF)中的硅接面中心的整合。我们使用微波等离子体辅助化学蒸气沉积法对分散在石英底物上的种子ND上生长SIV-ND。首先,我们使用倒置的共聚焦显微镜和原子力显微镜(AFM)在石英底物上搜索和表征SIV-ND。随后,我们从石英基材上拾取SIV-ND,并使用AFM尖端将其放在自由式ONF的表面上。系统测量了SIV-ND的荧光发射光谱,光子计数速率和强度相关性。
We experimentally demonstrate the integration of silicon-vacancy centers in nanodiamonds (SiV-NDs) with an optical nanofiber (ONF). We grow SiV-NDs on seed NDs dispersed on a quartz substrate using a microwave plasma-assisted chemical vapor deposition method. First, we search and characterize SiV-NDs on a quartz substrate using an inverted confocal microscope and an atomic force microscope (AFM). Subsequently, we pick up SiV-NDs from the quartz substrate and deposit them on the surface of a free-standing ONF using the AFM tip. The fluorescence emission spectrum, photon count rate, and intensity correlations for SiV-NDs are systematically measured.