School of Engineering and Applied Sciences and ‡Department of Physics, Harvard University , Cambridge, Massachusetts 02138, United States.
Nano Lett. 2013;13(12):5791-6. doi: 10.1021/nl402174g. Epub 2013 Nov 15.
The realization of efficient optical interfaces for solid-state atom-like systems is an important problem in quantum science with potential applications in quantum communications and quantum information processing. We describe and demonstrate a technique for coupling single nitrogen vacancy (NV) centers to suspended diamond photonic crystal cavities with quality factors up to 6000. Specifically, we present an enhancement of the NV center's zero-phonon line fluorescence by a factor of ~ 7 in low-temperature measurements.
实现固态类原子系统的高效光学接口是量子科学中的一个重要问题,在量子通信和量子信息处理中有潜在的应用。我们描述并演示了一种将单个氮空位(NV)中心与悬浮金刚石光子晶体腔耦合的技术,其品质因数高达 6000。具体来说,我们在低温测量中观察到 NV 中心的零声子线荧光增强了约 7 倍。