Nanoimplantation and Purcell enhancement of single NV centers in photonic crystal cavities in diamond
arXiv:1503.05666 · doi:10.1063/1.4922117
Abstract
We present the controlled creation of single nitrogen-vacancy (NV) centers via ion implantation at the center of a photonic crystal cavity which is fabricated in an ultrapure, single crystal diamond membrane. High-resolution placement of NV centers is achieved using collimation of a 5keV-nitrogen ion beam through a pierced tip of an atomic force microscope (AFM). We demonstrate coupling of the implanted NV centers' broad band fluorescence to a cavity mode and observe Purcell enhancement of the spontaneous emission. The results are in good agreement with a master equation model for the cavity coupling.
4 pages, 3 figures
References in corpus (4)
- Chip-scale nanofabrication of single spins and spin arrays in diamond
- Deterministic coupling of a single silicon-vacancy color center to a photonic crystal cavity in diamond
- Ultrafast spectral diffusion measurement on nitrogen vacancy centers in nanodiamonds using correlation interferometry
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Cited by in corpus (8)
- Single-molecule Scale Magnetic Resonance Spectroscopy using Nitrogen-Vacancy Centers in Diamond
- Optically coherent nitrogen-vacancy centers in μm-thin etched diamond membranes
- Integrated Single Photon Emitters
- Quantum micro-nano devices fabricated in diamond by femtosecond laser and ion irradiation
- Electrical control of deep NV centers in diamond by means of sub-superficial graphitic micro-electrodes
- Single crystal diamond pyramids for applications in nanoscale quantum sensing
- Color center fluorescence and spin manipulation in single crystal, pyramidal diamond tips
- Sub-10 nm precision engineering of solid-state defects via nanoscale aperture array mask