Controlling single diamond NV color center photoluminescence spectrum with a Fabry-Perot microcavity
arXiv:1010.0779 · doi:10.1088/1367-2630/13/2/025015
Abstract
We present both theoretical and experimental results on fluorescence of single defect centers in diamond nanocrystals embedded in a planar dielectric microcavity. From a theoretical point of view, we show that the overall fluorescence collection efficiency using moderate numerical aperture microscope objective can be enhanced by using a low quality factor microcavity. This could be used in particular for low temperature applications where the numerical aperture of collection microscope objectives is limited due to the experimental constraints. We experimentally investigate the control of the fluorescence spectrum of the emitted light from a single center. We show the simultaneous narrowing of the room temperature broadband emission spectrum and the increase of the fluorescence spectral density.
22 pages, 10 figures
References in corpus (12)
- Quantum Computing
- A Diamond Nanowire Single Photon Antenna
- Experimental realization of Wheeler's delayed-choice GedankenExperiment
- Deterministic coupling of a single nitrogen vacancy center to a photonic crystal cavity
- Cavity QED with Diamond Nanocrystals and Silica Microspheres
- Enhancement of the Zero Phonon Line emission from a Single NV-Center in a Nanodiamond via Coupling to a Photonic Crystal Cavity
- Fabrication and Characterization of Two-Dimensional Photonic Crystal Microcavities in Nanocrystalline Diamond
- Chip-based microcavities coupled to NV centers in single crystal diamond
- Polarization-selective excitation of N-V centers in diamond
- Hybrid photonic crystal cavity and waveguide for coupling to diamond NV-centers
- Towards a picosecond transform-limited nitrogen-vacancy based single photon source
- Sub-micron diameter micropillar cavities with high Quality factors and ultra-small mode volumes
Cited by in corpus (5)
- Magnetometry with nitrogen-vacancy ensembles in diamond based on infrared absorption in a doubly resonant optical cavity
- Scaling laws of the cavity enhancement for nitrogen-vacancy centers in diamond
- Tunable Hybrid Quantum Electrodynamics from Non-Linear Electron Transport
- Interaction between dual cavity modes in a planar photonic microcavity
- Magnetic-Field-Dependent Stimulated Emission from Nitrogen-Vacancy Centres in Diamond