Waveguide Integrated Superconducting Single Photon Detectors Implemented as Coherent Perfect Absorbers
arXiv:1409.1962 · doi:10.1038/ncomms9233
Abstract
At the core of an ideal single photon detector is an active material that ideally absorbs and converts photons to discriminable electronic signals. A large active material volume favours high-efficiency absorption, but often at the expense of conversion efficiency, noise, speed and timing accuracy. The present work demonstrates how the concept of coherent perfect absorption can be used to relax this trade-off for a waveguide-integrated superconducting nanowire single photon detector. A very short (8.5m long) and narrow (835nm) U-shaped NbTiN nanowire atop a silicon-on-insulator waveguide is turned into a perfect absorber by etching an asymmetric nanobeam cavity around it. At 2.05K, the detectors show 9612% on-chip quantum efficiency for 1545nm photons with an intrinsic dark count rate 0.1Hz. The estimated timing jitter is 53ps full-width at half-maximum and the reset time is 7ns, both extrinsically limited by readout electronics. This architecture is capable of pushing ultra-compact detector performance to ideal limits, and so promises to find a myriad of applications in quantum optics.
References in corpus (19)
- Photonic quantum technologies
- Optical Quantum Computing
- Coherent Perfect Absorbers: Time-reversed Lasers
- Silica-on-Silicon Waveguide Quantum Circuits
- Superconducting nanowire single-photon detectors: physics and applications
- Quantum walks of correlated particles
- Beating the Standard Quantum Limit with Four Entangled Photons
- High Quality factor photonic crystal nanobeam cavities
- Temperature dependent refractive index of silicon and germanium
- Ultra-low power generation of twin photons in a compact silicon ring resonator
- Vortex-induced dissipation in narrow current-biased thin-film superconducting strips
- Entanglement generation using silicon wire waveguide
- Gallium Arsenide (GaAs) Quantum Photonic Waveguide Circuits
- NbTiN superconducting nanowire detectors for visible and telecom wavelengths single photon counting on Si3N4 photonic circuits
- Waveguide photon-number-resolving detectors for quantum photonic integrated circuits
- An on-chip coupled resonator optical waveguide single-photon buffer
- Superconducting nanowire single photon detector with on-chip bandpass filter
- GaN directional couplers for integrated quantum photonics
- Superconducting Nanowire Single Photon Detector on Diamond
Cited by in corpus (39)
- Integrated photonics on thin-film lithium niobate
- Photonic quantum information processing: a review
- Photonic quantum information processing: a concise review
- Demonstrating sub-3 ps temporal resolution in a superconducting nanowire single-photon detector
- Coherent control of single electrons: a review of current progress
- Superconducting nanowire for single-photon detection: progress, challenges and opportunities
- Broadband on-chip single-photon spectrometer
- Femtosecond laser micromachining for integrated quantum photonics
- Advances in silicon quantum photonics
- Efficient extraction of zero-phonon-line photons from single nitrogen-vacancy centers in an integrated GaP-on-diamond platform
- Integrated transition edge sensors on lithium niobate waveguides
- Totally Destructive Many-Particle Interference
- Design of broadband high-efficiency superconducting-nanowire single photon detectors
- Spectral multiplexing of telecom emitters with stable transition frequency
- Improved heralded single-photon source with a photon-number-resolving superconducting nanowire detector
- Waveguide-integrated silicon T centres
- A versatile, inexpensive integrated photonics platform
- High visibility time-energy entangled photons from a silicon nanophotonic chip
- Optical single-shot readout of spin qubits in silicon
- Interference between independent photonic integrated devices for quantum key distribution
- Protocols for long-distance quantum communication with single Er ions
- On unitary reconstruction of linear optical networks
- Scalable feedback control of single photon sources for photonic quantum technologies
- Simulation of Silicon Waveguide Single-Photon Avalanche Detectors for Integrated Quantum Photonics
- Characterization of the Si:Se+ spin-photon interface
- Temporally and spectrally multiplexed single photon source using quantum feedback control for scalable photonic quantum technologies
- Integrated Photonic Platforms for Quantum Technology: A Review
- Information processing at the speed of light
- Protocol for generation of high-dimensional entanglement from an array of non-interacting photon emitters
- Probabilistic vortex crossing criterion for superconducting nanowire single-photon detectors
- Optomechanical Anti-lasing with Infinite Group Delay at a Phase Singularity
- Cavity-assisted controlled phase-flip gates
- Spectral Multiplexing of Rare-earth Emitters in a Co-doped Crystalline Membrane
- Low-noise Balanced Homodyne Detection with Superconducting Nanowire Single-Photon Detectors
- Superconducting nanowire single-photon spectrometer exploiting cascaded photonic crystal cavities
- Experimental retrieval of photon statistics from click detection
- Modelling quantum photonics on a quantum computer
- Polarization-entangled photon pair sources based on spontaneous four wave mixing assisted by polarization mode dispersion
- Design of micron-long superconducting nanowire perfect absorber for efficient high speed single-photon detection