Optical Quantum Computation
arXiv:1103.6071 · doi:10.1016/S0079-6638(10)05409-0
Abstract
We review the field of Optical Quantum Computation, considering the various implementations that have been proposed and the experimental progress that has been made toward realizing them. We examine both linear and nonlinear approaches and both particle and field encodings. In particular we discuss the prospects for large scale optical quantum computing in terms of the most promising physical architectures and the technical requirements for realizing them.
References in corpus (55)
- Simulated Quantum Computation of Molecular Energies
- Quantum computing with trapped ions
- Silica-on-Silicon Waveguide Quantum Circuits
- Entangled Photon Pairs from Semiconductor Quantum Dots
- Universal Quantum Computation with Continuous-Variable Cluster States
- Experimental quantum computing without entanglement
- Experimental demonstration of quantum memory for light
- Fault-tolerant quantum computation with high threshold in two dimensions
- Resource-efficient linear optical quantum computation
- Experimental entanglement of six photons in graph states
- Heralded Generation of Ultrafast Single Photons in Pure Quantum States
- Entanglement-free Heisenberg-limited phase estimation
- Generation of a superposition of odd photon number states for quantum information networks
- Mapping photonic entanglement into and out of a quantum memory
- A wavelength-tunable fiber-coupled source of narrowband entangled photons
- Bell inequality violation with two remote atomic qubits
- Quantum memory for squeezed light
- Measuring measurement
- High-speed linear optics quantum computing using active feed-forward
- Experimental demonstration of Shor's algorithm with quantum entanglement
- One-Way Quantum Computing in the Optical Frequency Comb
- Fault-tolerant linear optical quantum computing with small-amplitude coherent states
- Improved fidelity of triggered entangled photons from single quantum dots
- Experimental Analysis of a 4-Qubit Cluster State
- Demonstration of Shor's quantum factoring algorithm using photonic qubits
- Generation of large-amplitude coherent-state superposition via ancilla-assisted photon-subtraction
- How good must single photon sources and detectors be for efficient linear optical quantum computation?
- An avalanche-photodiode-based photon-number-resolving detector
- Experimental generation of four-mode continuous-variable cluster states
- Nonlinear spectroscopy of photons bound to one atom
- Experimental interference of independent photons
- Generation and transfer of single photons on a photonic crystal chip
- Realization and characterization of a 2-photon 4-qubit linear cluster state
- Outline of the SECOQC Quantum-Key-Distribution Network in Vienna
- Demonstration of a quantum nondemolition sum gate
- Percolation, renormalization, and quantum computing with non-deterministic gates
- Photon-Photon Entanglement with a Single Trapped Atom
- Generation of high-fidelity four-photon cluster state and quantum-domain demonstration of one-way quantum computing
- Active one-way quantum computation with 2-photon 4-qubit cluster states
- Efficient retrieval of a single excitation stored in an atomic ensemble
- Direct, Loss-Tolerant Characterization of Nonclassical Photon Statistics
- Optical Nondestructive Controlled-NOT Gate without Using Entangled Photons
- Experimental realization of a quantum game on a one-way quantum computer
- Tunable Up-Conversion Photon Detector
- A tunable narrowband entangled photon pair source for resonant single-photon single-atom interaction
- Methods for linear optical quantum Fredkin gate
- Quantum Optical Systems for the Implementation of Quantum Information Processing
- Experimental Demonstration of Decoherence-Free One-Way Information Transfer
- Delay of Squeezing and Entanglement using Electromagnetically Induced Transparency in a Vapour Cell
- Nonlinear transmission through a tapered fiber in rubidium vapor
- Error tolerance and tradeoffs in loss- and failure-tolerant quantum computing schemes
- Optical Zeno Gate: Bounds for Fault Tolerant Operation
- Photon-Echo Quantum Memory
- Revealing anyonic features in a toric code quantum simulation
- Indistinguishable photons from independent semiconductor single-photon devices
Cited by in corpus (45)
- Photonic quantum information processing: a concise review
- Quantum memories: emerging applications and recent advances
- Remote creation of hybrid entanglement between particle-like and wave-like optical qubits
- Entangling quantum and classical states of light
- Near-deterministic quantum teleportation and resource-efficient quantum computation using linear optics and hybrid qubits
- Optical synthesis of large-amplitude squeezed coherent-state superpositions with minimal resources
- Experimental device-independent verification of quantum steering
- Efficient and pure femtosecond-pulse-length source of polarization-entangled photons
- Full characterization of a highly multimode entangled state embedded in an optical frequency comb using pulse shaping
- Experimental optical phase measurement approaching the exact Heisenberg limit
- Device-independent quantum key distribution with single-photon sources
- GHz detection rates and dynamic photon-number resolution with superconducting nanowire arrays
- Resource-efficient and fault-tolerant topological quantum computation with hybrid entanglement of light
- Measurement-induced strong Kerr nonlinearity for weak quantum states of light
- Nearly Deterministic Bell Measurement for Multiphoton Qubits and Its Application to Quantum Information Processing
- Experimental quantum processing enhancement in modelling stochastic processes
- Quantum teleportation between "particle-like" and "field-like" qubits using hybrid entanglement under decoherence effects
- Optimal multi-photon phase sensing with a single interference fringe
- Heralded quantum steering over a high-loss channel
- Proposal for Quantum Simulation via All-Optically Generated Tensor Network States
- Quantum phase estimation using a multi-headed cat state
- Characterizations and Quantifications of Macroscopic Quantumness and Its Implementations using Optical Fields
- All-photonic architectural roadmap for scalable quantum computing using Greenberger-Horne-Zeilinger states
- Informationally symmetrical Bell state preparation and measurement
- Entangled coherent states versus entangled photon pairs for practical quantum information processing
- Quantum teleportation between a single-rail single-photon qubit and a coherent state qubit using hybrid entanglement under decoherence effects
- Information processing at the speed of light
- Highly photon loss tolerant quantum computing using hybrid qubits
- Nearly deterministic Bell measurement with multiphoton entanglement for efficient quantum information processing
- Passive quantum error correction of linear optics networks through error averaging
- Two different types of optical hybrid qubits for teleportation in a lossy environment
- Implementation of Shor's Algorithm with a Single Photon in 32 Dimensions
- Parity-encoding-based quantum computing with Bayesian error tracking
- Passive interferometric symmetries of multimode Gaussian pure states
- Superselection rules and bosonic quantum computational resources
- Optimal linear optical discrimination of Bell-like states
- A diagrammatic calculus of fermionic quantum circuits
- Tests For Complete Positivity of Quantum Channels
- Quantum Optics based Algorithm for Measuring the Similarity between Images
- Photonic Hybrid Quantum Computing
- Experimental investigation of a multi-photon Heisenberg-limited interferometric scheme: the effect of imperfections
- Generalized Type II Fusion of Cluster States
- Loss tolerant cross-Kerr enhancement via modulated squeezing
- Are optical quantum information processing experiments possible without beamsplitter?
- Transferring quantum entangled states between multiple single-photon-state qubits and coherent-state qubits in circuit QED