Information processing at the speed of light
arXiv:2410.00442 · doi:10.1007/s12200-024-00133-3
Abstract
In recent years, quantum computing has made significant strides, particularly in light-based technology. The introduction of quantum photonic chips has ushered in an era marked by scalability, stability, and cost-effectiveness, paving the way for innovative possibilities within compact footprints. This article provides a comprehensive exploration of photonic quantum computing, covering key aspects such as encoding information in photons, the merits of photonic qubits, and essential photonic device components including light squeezers, quantum light sources, interferometers, photodetectors, and waveguides. The article also examines photonic quantum communication and internet, and its implications for secure systems, detailing implementations such as quantum key distribution and long-distance communication. Emerging trends in quantum communication and essential reconfigurable elements for advancing photonic quantum internet are discussed. The review further navigates the path towards establishing scalable and fault-tolerant photonic quantum computers, highlighting quantum computational advantages achieved using photons. Additionally, the discussion extends to programmable photonic circuits, integrated photonics and transformative applications. Lastly, the review addresses prospects, implications, and challenges in photonic quantum computing, offering valuable insights into current advancements and promising future directions in this technology.
References in corpus (127)
- Supplementary information for "Quantum supremacy using a programmable superconducting processor"
- The Quantum Internet
- Quantum phase transition from a superfluid to a Mott insulator in a gas of ultracold atoms
- Experimental quantum teleportation
- Quantum Computing
- Graphene photodetectors for high-speed optical communications
- Photonic quantum technologies
- Quantum computational advantage using photons
- Satellite-to-ground quantum key distribution
- Simulated Quantum Computation of Molecular Energies
- Integrated Photonic Quantum Technologies
- Secure Quantum Key Distribution
- Free-Space distribution of entanglement and single photons over 144 km
- Optical Quantum Computing
- Strong quantum computational advantage using a superconducting quantum processor
- Silica-on-Silicon Waveguide Quantum Circuits
- Ground-to-satellite quantum teleportation
- Superconducting nanowire single-photon detectors: physics and applications
- Quantum walks of correlated particles
- Universal Quantum Computation with Continuous-Variable Cluster States
- Measurement device independent quantum key distribution over 404 km optical fibre
- Fault-tolerant quantum computation with high threshold in two dimensions
- Resource-efficient linear optical quantum computation
- Integrated micro-comb sources for quantum optical applications
- Photonic Boson Sampling in a Tunable Circuit
- Quantum Repeaters with Photon Pair Sources and Multi-Mode Memories
- Quantum circuits with many photons on a programmable nanophotonic chip
- Boson sampling with 20 input photons in 60-mode interferometers at state spaces
- Shor's quantum factoring algorithm on a photonic chip
- High-dimensional quantum communication: benefits, progress, and future challenges
- A wavelength-tunable fiber-coupled source of narrowband entangled photons
- Phase-Programmable Gaussian Boson Sampling Using Stimulated Squeezed Light
- A 2D Quantum Walk Simulation of Two-Particle Dynamics
- Efficient, Compact and Low Loss Thermo-Optic Phase Shifter in Silicon
- Manipulating multi-photon entanglement in waveguide quantum circuits
- Sending-or-Not-Sending with Independent Lasers: Secure Twin-Field Quantum Key Distribution Over 509 km
- Experimental Long-Distance Decoy-State Quantum Key Distribution Based On Polarization Encoding
- Long term performance of the SwissQuantum quantum key distribution network in a field environment
- High-speed linear optics quantum computing using active feed-forward
- Large-scale photonic Ising machine by spatial light modulation
- Long distance decoy state quantum key distribution in optical fiber
- Complete experimental toolbox for alignment-free quantum communication
- One-Way Quantum Computing in the Optical Frequency Comb
- Quantum Storage of Orbital Angular Momentum Entanglement in an Atomic Ensemble
- Satellite-to-ground quantum communication using a 50-kg-class micro-satellite
- Fault-tolerant linear optical quantum computing with small-amplitude coherent states
- Field and long-term demonstration of a wide area quantum key distribution network
- Quantum entanglement of angular momentum states with quantum numbers up to 10010
- Divergence of an orbital-angular-momentum-carrying beam upon propagation
- Remote Preparation of Single-Photon "Hybrid" Entangled and Vector-Polarization States
- Frequency-encoded photonic qubits for scalable quantum information processing
- A Monolithic Integrated Microwave Photonics Filter
- Polarization entangled state measurement on a chip
- How good must single photon sources and detectors be for efficient linear optical quantum computation?
- Experimental Scattershot Boson Sampling
- Optimal quantum cloning of orbital angular momentum photon qubits via Hong-Ou-Mandel coalescence
- Perspective: Toward large-scale fault-tolerant universal photonic quantum computing
- Generation of one-million-mode continuous-variable cluster state by unlimited time-domain multiplexing
- Ultra-low power generation of twin photons in a compact silicon ring resonator
- Real time demonstration of high bitrate quantum random number generation with coherent laser light
- Multimode quantum interference of photons in multiport integrated devices
- A solid state spin-wave quantum memory for time-bin qubits
- Quantum walks and wavepacket dynamics on a lattice with twisted photons
- Photonic quantum walk in a single beam with twisted light
- Quantum teleportation on a photonic chip
- Long-distance quantum key distribution secure against coherent attacks
- Tailored photon-pair generation in optical fibers
- Quantum limited amplification and entanglement in coupled nonlinear resonators
- Direct generation of three-photon polarization entanglement
- High-dimensional frequency-bin entangled photons in an optical microresonator on a chip
- Experimental quantum speed-up in reinforcement learning agents
- Multi-photon quantum interference in a multi-port integrated photonic device
- Entanglement generation using silicon wire waveguide
- Hyperentanglement of two photons in three degrees of freedom
- Recent advances on integrated quantum communications
- A monolithically integrated polarization entangled photon pair source on a silicon chip
- Scalable boson-sampling with time-bin encoding using a loop-based architecture
- Quantum Error Correction with the Gottesman-Kitaev-Preskill Code
- The Sagnac effect: 20 years of development in matter-wave interferometry
- Ultra-high bandwidth quantum secured data transmission
- Gallium Arsenide (GaAs) Quantum Photonic Waveguide Circuits
- A quantum entropy source on an InP photonic integrated circuit for random number generation
- Multistage Entanglement Swapping
- GHz-gated InGaAs/InP single-photon detector with detection efficiency exceeding 55% at 1550 nm
- Quantum interferometry with three-dimensional geometry
- Cavity-enhanced single photon source based on the silicon vacancy center in diamond
- Field test of a practical secure communication network with decoy-state quantum cryptography
- Collapses and revivals of stored orbital angular momentum of light in a cold atomic ensemble
- Analog quantum error correction with encoding a qubit into an oscillator
- Universal Quantum Computing with Measurement-Induced Continuous-Variable Gate Sequence in a Loop-Based Architecture
- Time-bin entangled photon pair generation from Si micro-ring resonator
- High-fidelity entanglement swapping with fully independent sources
- High-fidelity operation of quantum photonic circuits
- Creation of a Bose-condensed gas of rubidium 87 by laser cooling
- What can quantum optics say about computational complexity theory?
- Entanglement of orbital angular momentum states between an ensemble of cold atoms and a photon
- A Modulator-Free Quantum Key Distribution Transmitter Chip
- Experimental statistical signature of many-body quantum interference
- Measuring Qutrit-Qutrit Entanglement of Orbital Angular Momentum States of an Atomic Ensemble and a Photon
- Experimental access to higher-dimensional entangled quantum systems using integrated optics
- Arbitrarily Large Continuous-Variable Cluster States from a Single Quantum Nondemolition Gate
- Fermionic statistics suppresses Fano resonances
- Entanglement of Polarization and Orbital Angular Momentum
- Low-noise on-chip frequency conversion by four-wave-mixing Bragg scattering in SiNx waveguides
- Experimental Quantum Communication without a Shared Reference Frame
- Experimental transmission of quantum digital signatures over 90-km of installed optical fiber using a differential phase shift quantum key distribution system
- A reversible optical memory for twisted photons
- High-efficiency WSi superconducting nanowire single-photon detectors for quantum state engineering in the near infrared
- Franck-Condon factors by counting perfect matchings of graphs with loops
- Quantum teleportation in the spin-orbit variables of photon pairs
- Protecting entanglement of twisted photons by adaptive optics
- Multi-user quantum key distribution with entangled photons from an AlGaAs chip
- Silicon photonic processor of two-qubit entangling quantum logic
- Hong-Ou-Mandel interference between independent III-V on silicon waveguide integrated lasers
- Training Gaussian Boson Sampling Distributions
- On-chip generation of photon-triplet states
- Polarization entangled photon-pair source based on quantum nonlinear photonics and interferometry
- Resilience of hybrid optical angular momentum qubits to turbulence
- Deterministic generation of Gaussian pure state in quasi-local dissipative system
- Quantum Walk with a four-dimensional coin
- Multidimensional quantum information based on single-photon temporal wavepackets
- Parasitic Photon-Pair Suppression via Photonic Stop-Band Engineering
- Generation of narrow-band polarization-entangled photon pairs at a rubidium D1 line
- Characterization of multi-mode linear optical networks
- Fundamental properties of beam-splitters in classical and quantum optics
- Integrated four-channel all-fiber up-conversion single-photon-detector with adjustable efficiency and dark count
- Liquid-nitrogen cooled, free-running single-photon sensitive detector at telecommunication wavelengths