A planar dielectric antenna for directional single-photon emission and near-unity collection efficiency
arXiv:1009.3876 · doi:10.1038/nphoton.2010.312
Abstract
Single emitters have been considered as sources of single photons in various contexts such as cryptography, quantum computation, spectroscopy, and metrology. The success of these applications will crucially rely on the efficient directional emission of photons into well-defined modes. To accomplish a high efficiency, researchers have investigated microcavities at cryogenic temperatures, photonic nanowires, and near-field coupling to metallic nano-antennas. However, despite an impressive progress, the existing realizations substantially fall short of unity collection efficiency. Here we report on a theoretical and experimental study of a dielectric planar antenna, which uses a layered structure for tailoring the angular emission of a single oriented molecule. We demonstrate a collection efficiency of 96% using a microscope objective at room temperature and obtain record detection rates of about 50 MHz. Our scheme is wavelength-insensitive and can be readily extended to other solid-state emitters such as color centers and semiconductor quantum dots.
References in corpus (2)
Cited by in corpus (88)
- Interfacing single photons and single quantum dots with photonic nanostructures
- Nanoantennas for visible and infrared radiation
- Near-unity coupling efficiency of a quantum emitter to a photonic-crystal waveguide
- Bright single-photon sources in bottom-up tailored nanowires
- Optically addressable molecular spins for quantum information processing
- Strong coupling between single atoms and non-transversal photons
- Controlling spontaneous emission with plasmonic optical patch antennas
- A Versatile Source of Single Photons for Quantum Information Processing
- Efficient readout of a single spin state in diamond via spin-to-charge conversion
- Single organic molecules for photonic quantum technologies
- Entanglement-Based Machine Learning on a Quantum Computer
- Integrated diamond networks for quantum nanophotonics
- Mapping nanoscale hotspots with single-molecule emitters assembled into plasmonic nanocavities using DNA origami
- Bright-exciton fine structures splittings in single perovskite nanocrystals
- The photonic trumpet: An efficient, broadband interface between a solid-state quantum emitter and a Gaussian beam
- Highly efficient coupling of photons from nanoemitters into single-mode optical fibers
- Comparative analysis of imaging configurations and objectives for Fourier microscopy
- Metallo-dielectric hybrid antennas for ultrastrong enhancement of spontaneous emission
- Scanning emitter lifetime imaging microscopy for spontaneous emission control
- Detection, spectroscopy and state preparation of a single praseodymium ion in a crystal
- Evaluation of nitrogen- and silicon-vacancy defect centres as single photon sources in quantum key distribution
- Quantum imaging with sub-Poissonian light: challenges and perspectives in optical metrology
- Out-of-plane orientation of luminescent excitons in atomically thin indium selenide flakes
- Roadmap for gallium arsenide spin qubits
- Single-photon spectroscopy of a single molecule
- Roadmap on quantum nanotechnologies
- A high-fidelity photon gun: intensity-squeezed light from a single molecule
- Microscopic diamond Solid-Immersion-Lenses fabricated around single defect ceneters by focussed ion beam milling
- The photonic wheel: demonstration of a state of light with purely transverse angular momentum
- Enhanced and directional single photon emission in hyperbolic metamaterials
- Coherent Interaction of Light and Single Molecules in a Dielectric Nanoguide
- A Scanning Cavity Microscope
- Diamond Integrated Quantum Photonics: A Review
- Controlling the Dynamics of Quantum Mechanical Systems Sustaining Dipole-Forbidden Transitions via Optical Nanoantennas
- 99% efficiency in collecting photons from a single emitter
- Quantum repeaters and quantum key distribution: analysis of secret key rates
- Nanoscale Sensing Using Point Defects in Single-Crystal Diamond: Recent Progress on Nitrogen Vacancy Center-Based Sensors
- Plasmonic antennas and zero mode waveguides to enhance single molecule fluorescence detection and fluorescence correlation spectroscopy towards physiological concentrations
- A low-loss, broadband antenna for efficient photon collection from a coherent spin in diamond
- Enhanced spontaneous emission from nanodiamond colour centres on opal photonic crystal
- Directional Emission from Dielectric Leaky-Wave Nanoantennas
- Efficient room-temperature molecular single-photon sources for quantum key distribution
- Polaritonic states in a dielectric nanoguide: localization and strong coupling
- Plasmonic Nanoantennas for Efficient Control of Polarization-Entangled Photon Pairs
- A metal-dielectric parabolic antenna to direct single photons
- Quantum optics: Push-button photon entanglement
- Deciphering Charging Status, Absolute Quantum Efficiency, and Absorption Cross Section of MultiCarrier States in Single Colloidal Quantum Dot
- Hybrid plasmonic waveguide coupling of photons from a single molecule
- Quantum repeaters based on heralded qubit amplifiers
- Frequency stabilization of the zero-phonon line of a quantum dot via phonon-assisted active feedback
- Plasmon-Assisted Suppression of Surface Trap States and Enhanced Band-Edge Emission in a Bare CdTe Quantum Dot
- Ultraviolet optical horn antennas for label-free detection of single proteins
- Hyperbolic Metamaterials via Hierarchical Block Copolymer Nanostructures
- Modification of the Absorption Cross Section in the Optical Near-field
- Fiber-integrated single photon source of high efficiency based on a concept of ultra-broadband optical horn antenna
- Better Randomness with Single Photons
- A single photon transistor based on superconducting systems
- Quantum Nature of Light Measured With a Single Detector
- A cavity-based optical antenna for color centers in diamond
- Beam steering and impedance matching of plasmonic horn nanoantennas
- Dissipative modes, Purcell factors and directional beta factors in gold bowtie nanoantenna structures
- Hyperbolic Metamaterial Resonator-Antenna Scheme for Large, Broadband Emission Enhancement and Single Photon Collection
- Enhanced Directional Coupling of Light with a Whispering Gallery Microcavity
- The Truncated Metallo-dielectric Omnidirectional Reflector: Collecting Single Photons in the Fundamental Gaussian Mode with 95% Efficiency
- Surface Plasmon-Coupled Enhanced Transmission
- A narrow-band sodium-resonant fiber-coupled single photon source
- Two-atom system as a nano-antenna for mode switching and light routing
- High-speed quantum transducer with a single-photon emitter in a 2D resonator
- Radiation pattern of two identical emitters driven by a Laguerre-Gaussian beam: An atom nanoantenna
- Optical ultracompact directional antenna based on a dimer nanorod structure
- Small but large: Single organic molecules as hybrid platforms for quantum technologies
- Increasing the photon collection rate from a single NV center with a silver mirror
- Time-frequency encoded single-photon sources and broadband quantum memories based on a tunable one-dimensional atom
- Fluorescence enhancement of single V2 centers in a 4H-SiC cavity antenna
- Single Molecule DNA Detection with an Atomic Vapor Notch Filter
- Single-Molecule Doped Crystalline Nanosheets for Delicate Photophysics Studies and Directional Single-Photon Emitting Devices
- Quantum Description of Radiative Losses in Optical Cavities
- Electric directional steering of cathodoluminescence from graphene-based hydrid nanostructures
- Fabrication and characterization of optical nanofiber tips
- A scanning planar Yagi-Uda antenna for fluorescence detection
- Review Article: Quantum Nanophotonics in Diamond
- Towards Simultaneous Observation of Path and Interference of Single Photon in a Modified Mach-Zehnder Interferometer
- Organic molecules as single-photon sources
- Localised excitation of a single photon source by a nanowaveguide
- High-cooperativity nanofiber laser
- Coupling quantum emitters in 2D materials with tapered fibers
- Near-unity efficiency and photon indistinguishability for the "hourglass" single-photon source using suppression of background emission
- Harnessing the Diamond-Air Interface as an Efficient Photon Antenna for Solid-State Emitters