One- and two-dimensional photonic crystal micro-cavities in single crystal diamond
arXiv:1109.4595 · doi:10.1038/nnano.2011.190
Abstract
The development of solid-state photonic quantum technologies is of great interest for fundamental studies of light-matter interactions and quantum information science. Diamond has turned out to be an attractive material for integrated quantum information processing due to the extraordinary properties of its colour centres enabling e.g. bright single photon emission and spin quantum bits. To control emitted photons and to interconnect distant quantum bits, micro-cavities directly fabricated in the diamond material are desired. However, the production of photonic devices in high-quality diamond has been a challenge so far. Here we present a method to fabricate one- and two-dimensional photonic crystal micro-cavities in single-crystal diamond, yielding quality factors up to 700. Using a post-processing etching technique, we tune the cavity modes into resonance with the zero phonon line of an ensemble of silicon-vacancy centres and measure an intensity enhancement by a factor of 2.8. The controlled coupling to small mode volume photonic crystal cavities paves the way to larger scale photonic quantum devices based on single-crystal diamond.
References in corpus (11)
- Quantum Computing
- Scalable quantum register based on coupled electron spins in a room temperature solid
- Cavity QED with Diamond Nanocrystals and Silica Microspheres
- Stark shift control of single optical centers in diamond
- Photonic Crystal Nanobeam Cavity Strongly Coupled to the Feeding Waveguide
- Fabrication and Characterization of Two-Dimensional Photonic Crystal Microcavities in Nanocrystalline Diamond
- Fabrication of Ultrathin Single-Crystal Diamond Membranes
- Coherent interference effects in a nano-assembled optical cavity-QED system
- Prospects for measurement-based quantum computing with solid state spins
- Deterministic nano-assembly of a coupled quantum emitter - photonic crystal cavity system
- Towards a picosecond transform-limited nitrogen-vacancy based single photon source
Cited by in corpus (79)
- Cavity Optomechanics
- Magnetometry with nitrogen-vacancy defects in diamond
- Indistinguishable photons from separated silicon-vacancy centers in diamond
- Coupling of Nitrogen-Vacancy Centers to Photonic Crystal Cavities in Monocrystalline Diamond
- Single-Crystal Diamond Nanomechanical Resonators with Quality Factors exceeding one Million
- Diamond Nanophotonics
- Laser writing of coherent colour centres in diamond
- High-Q optical nanocavities in bulk single-crystal diamond
- Coupling of a single NV-center in diamond to a fiber-based microcavity
- Coherent spin control of a nanocavity-enhanced qubit in diamond
- Photonic Crystal Cavities from Hexagonal Boron Nitride
- Coherent control of the silicon-vacancy spin in diamond
- Deterministic coupling of a single silicon-vacancy color center to a photonic crystal cavity in diamond
- Nanoscale nuclear magnetic resonance with a 1.9-nm-deep nitrogen-vacancy sensor
- Narrow-linewidth homogeneous optical emitters in diamond nanostructures via silicon ion implantation
- A fiber-coupled diamond quantum nanophotonic interface
- Strongly Cavity-Enhanced Spontaneous Emission from Silicon-Vacancy Centers in Diamond
- Tunable transport with broken space-time symmetries
- Phonon Cooling and Lasing with Nitrogen-Vacancy Centers in Diamond
- Cavity quantum electrodynamics with color centers in diamond
- Perfect preferential orientation of nitrogen-vacancy defects in a synthetic diamond sample
- Ultralow mode-volume photonic crystal nanobeam cavities for high efficiency coupling to individual carbon nanotube emitters
- Evaluation of nitrogen- and silicon-vacancy defect centres as single photon sources in quantum key distribution
- High resolution spectroscopy of single NV defects coupled with nearby C nuclear spins in diamond
- Three-dimensional quantum photonic elements based on single nitrogen vacancy-centres in laser-written microstructures
- Cavity-enhanced single photon source based on the silicon vacancy center in diamond
- Rectangular Photonic Crystal Nanobeam Cavities in Bulk Diamond
- Photonic nano-structures on (111) oriented diamond
- Microscopic imaging of elastic deformation in diamond via in-situ stress tensor sensors
- Diamond Integrated Quantum Photonics: A Review
- Coupling of silicon-vacancy centers to a single crystal diamond cavity
- Maskless and targeted creation of arrays of colour centres in diamond using focused ion beam technology
- Coupling of nitrogen vacancy centers in nanodiamonds by means of phonons
- Nanoimplantation and Purcell enhancement of single NV centers in photonic crystal cavities in diamond
- Scaling laws of the cavity enhancement for nitrogen-vacancy centers in diamond
- Single crystal diamond nanobeam waveguide optomechanics
- Two-Dimensional Photonic Crystal Slab Nanocavities on Bulk Single-Crystal Diamond
- Realizing > 300,000 in diamond microdisks for optomechanics via etch optimization
- Nanoscale Sensing Using Point Defects in Single-Crystal Diamond: Recent Progress on Nitrogen Vacancy Center-Based Sensors
- Cavity-enhanced measurements of defect spins in silicon carbide
- Microscopy with a Deterministic Single Ion Source
- Quantum micro-nano devices fabricated in diamond by femtosecond laser and ion irradiation
- Diamond as a material for monolithically integrated optical and optomechanical devices
- Single-photon time-dependent spectra in coupled cavity arrays
- Novel color center platforms enabling fundamental scientific discovery
- Optically coherent nitrogen-vacancy defect centers in diamond nanostructures
- High quality factor nanophotonic resonators in bulk rare-earth doped crystals
- Bottom-up Engineering of Diamond Nanostructures
- Unidirectional single-photon emission from germanium-vacancy zero-phonon lines: Deterministic emitter-waveguide interfacing at plasmonic hot spots
- Subtractive 3D Printing of Optically Active Diamond Structures
- Electrical excitation of silicon-vacancy centers in single crystal diamond
- Light scattering in an optomechanical cavity coupled to a single atom
- Dissipative superradiant spin amplifier for enhanced quantum sensing
- Generating entanglement with low Q-factor microcavities
- Spin Measurements of NV Centers Coupled to a Photonic Crystal Cavity
- Low temperature investigations and surface treatments of colloidal narrowband fluorescent nanodiamonds
- How Nonlinear Optical Effects degrade Hong-Ou-Mandel Like Interference
- Suppression of Rabi oscillations in hybrid optomechanical systems
- Diamond Nanophotonic Circuits Functionalized by Dip-pen Nanolithography
- Deterministic and Robust Entanglement of Nitrogen Vacancy Centers using Low-Q Photonic Crystal Cavities
- A cavity-mediated quantum CPHASE gate between NV spin qubits in diamond
- Optical properties of silicon-implanted polycrystalline diamond membranes
- Fabrication of Sawfish photonic crystal cavities in bulk diamond
- Quantum correlations of light and matter through environmental transitions
- Proposal for a loophole-free Bell test based on spin-photon interactions in cavities
- Fiber-taper collected emission from NV centers in high- diamond microdisks
- Device-independent quantum key distribution with spin-coupled cavities
- Homogeneous Free-Standing Nanostructures from Bulk Diamond over Millimeter Scales for Quantum Technologies
- Single-photon emitters based on NIR colour centres in diamond coupled with solid immersion lenses
- Design of diamond microcavities for single photon frequency down-conversion
- Two-qubit quantum gates for defect qubits in diamond and similar systems
- Quantum Nanophotonics with Group IV defects in Diamond
- Imaging heat transport in suspended diamond nanostructures with integrated spin defect thermometers
- Review Article: Quantum Nanophotonics in Diamond
- Maximizing the information gain of a single ion microscope using bayes experimental design
- Telecommunication-wavelength two-dimensional photonic crystal cavities in a thin single-crystal diamond membrane
- A random laser based on diamond nanoneedles
- Optimization of diamond optomechanical crystal cavities
- Laser-cut Patterned, Micrometer-thin Diamond Membranes with Coherent Color Centers for Open Microcavities