Propagating Gottesman-Kitaev-Preskill states encoded in an optical oscillator
arXiv:2309.02306 · doi:10.1126/science.adk7560
Abstract
A quantum computer with low-error, high-speed quantum operations and capability for interconnections is required for useful quantum computations. A logical qubit called Gottesman-Kitaev-Preskill (GKP) qubit in a single Bosonic harmonic oscillator is efficient for mitigating errors in a quantum computer. The particularly intriguing prospect of GKP qubits is that entangling gates as well as syndrome measurements for quantum error correction only require efficient, noise-robust linear operations. To date, however, GKP qubits have been only demonstrated at mechanical and microwave frequency in a highly nonlinear physical system. The physical platform that naturally provides the scalable linear toolbox is optics, including near-ideal loss-free beam splitters and near-unit efficiency homodyne detectors that allow to obtain the complete analog syndrome for optimized quantum error correction. Additional optical linear amplifiers and specifically designed GKP qubit states are then all that is needed for universal quantum computing. In this work, we realize a GKP state in propagating light at the telecommunication wavelength and demonstrate homodyne meausurements on the GKP states for the first time without any loss corrections. Our GKP states do not only show non-classicality and non-Gaussianity at room temperature and atmospheric pressure, but unlike the existing schemes with stationary qubits, they are realizable in a propagating wave system. This property permits large-scale quantum computation and interconnections, with strong compatibility to optical fibers and 5G telecommunication technology.
11 pages, 5 figures
References in corpus (12)
- Quantum computational advantage using photons
- Boson sampling with 20 input photons in 60-mode interferometers at state spaces
- Fabrication of low-loss quasi-single-mode PPLN waveguide and its application to a modularized broadband high-level squeezer
- Quantum detector tomography of superconducting nanostrip photon-number-resolving detector
- 43-GHz bandwidth real-time amplitude measurement of 5-dB squeezed light using modularized optical parametric amplifier with 5G technology
- Non-Gaussian quantum state generation by multi-photon subtraction at the telecommunication wavelength
- Nonlinear feedforward enabling quantum computation
- Efficient backcasting search for optical quantum state synthesis
- Quantum arbitrary waveform generator
- Purification of photon subtraction from continuous squeezed light by filtering
- Streamlined quantum computing with macronode cluster states
- Switching-free time-domain optical quantum computation with quantum teleportation
Cited by in corpus (71)
- Quantum Error Correction of Qudits Beyond Break-even
- Experimental preparation of multiphoton-added coherent states of light
- Robust and Deterministic Preparation of Bosonic Logical States in a Trapped Ion
- Generation of Flying Logical Qubits using Generalized Photon Subtraction with Adaptive Gaussian Operations
- All-optical quantum computing using cubic phase gates
- Continuous-variable quantum communication
- Fault-tolerant quantum computation by hybrid qubits with bosonic cat-code and single photons
- Quantum metrology with a continuous-variable system
- Nonlinear Domain Engineering for Quantum Technologies
- Bridging magic and non-Gaussian resources via Gottesman-Kitaev-Preskill encoding
- Non-Markovian feedback for optimized quantum error correction
- Error Correction Using Squeezed Fock States
- Ground state nature and nonlinear squeezing of Gottesman-Kitaev-Preskill states
- On-chip quantum interference between independent lithium niobate-on-insulator photon-pair sources
- Boosting the generation rate of squeezed single-photon states by generalized photon subtraction
- Quantum control of continuous systems via nonharmonic potential modulation
- Experimental demonstration of a versatile and scalable scheme for iterative generation of non-Gaussian states of light
- Large-scale time-multiplexed nanophotonic parametric oscillators
- Seeding Gaussian boson samplers with single photons for enhanced state generation
- Linear-optical quantum computation with arbitrary error-correcting codes
- Overcoming the fundamental limit of quantum transduction via intraband entanglement
- Passive environment-assisted quantum communication with GKP states
- Continuous-variable quantum key distribution over 50.4 km fiber using integrated silicon photonic transmitter and receiver
- Extended analysis of distillation and purification of squeezed states of light
- Gottesman-Kitaev-Preskill encoding in continuous modal variables of single photons
- Classical simulation and quantum resource theory of non-Gaussian optics
- Clifford operations and homological codes for rotors and oscillators
- Generalized squeezing as a witness
- Optically-Sampled Superconducting-Nanostrip Photon-Number Resolving Detector for Non-Classical Quantum State Generation
- Engineering Bosonic Codes with Quantum Lattice Gates
- Sequential and Programmable Squeezing Gates for Optical Non-Gaussian Input States
- Error suppression in multicomponent cat codes with photon subtraction and teleamplification
- Encoded probabilistic imaginary-time evolution on a trapped-ion quantum computer for ground and excited states of spin qubits
- Machine learning for efficient generation of universal hybrid quantum computing resources
- A complete continuous-variable quantum computation architecture based on the 2D spatiotemporal cluster state
- The stellar decomposition of Gaussian quantum states
- Wigner-negative states in the steady-state emission of a two-level system driven by squeezed light
- Time-domain programmable beam-splitter operations for an optical phase-sensitive non-Gaussian state
- Quadrature Coherence Scale of Linear Combinations of Gaussian Functions in Phase Space
- Parametric Amplification of a Quantum Pulse
- Efficient optical cat state generation using squeezed few-photon superposition states
- Surpassing the loss-noise robustness trade-off in quantum key distribution
- Quantum non-Gaussian high Fock states of light pulses and their superpositions
- Bosonic Pauli+: Efficient Simulation of Concatenated Gottesman-Kitaev-Preskill Codes
- Logical channel for heralded and pure loss with the Gottesman-Kitaev-Preskill code
- Certification of stellar ranks of quantum states of light with a pair of click detectors
- Classical simulation of circuits with realistic odd-dimensional Gottesman-Kitaev-Preskill states
- ZX Graphical Calculus for Continuous-Variable Quantum Processes
- Non-Gaussian state teleportation with a nonlinear feedforward
- Linear optical quantum computing with a hybrid squeezed cat code
- Linear-optical approach to encoding qubits into harmonic-oscillator modes via quantum walks
- Safeguarding Oscillators and Qudits with Distributed Two-Mode Squeezing
- Logical channels in approximate Gottesman-Kitaev-Preskill error correction
- Optomechanical resource for fault-tolerant quantum computing
- Nonlinear squeezing of superpositions of quadrature eigenstates
- Arbitrary high-fidelity binomial codes from multiphoton spin-boson interactions
- Experimental investigation of heralded Gaussification of phase-randomized coherent states of light
- Photonic Hybrid Quantum Computing
- Chasing shadows with Gottesman-Kitaev-Preskill codes
- Scalable Optical Quantum State Synthesizer with Dual-Mode Resonator Memory
- Single-Period Floquet Control of Bosonic Codes with Quantum Lattice Gates
- Optical Quantum Computing
- Linear-optical protocols for mitigating and suppressing noise in bosonic systems
- Direct estimation of arbitrary observables of an oscillator
- High-Rate Four Photon Subtraction from Squeezed Vacuum: Preparing Cat State for Optical Quantum Computation
- Enlarging the GKP stabilizer group for enhanced noise protection
- Robust Negativity in the Quantum-to-Classical Transition of Kerr Dynamics
- Extensible universal photonic quantum computing with nonlinearity
- Simplified scheme for continuous-variable entanglement distillation: multicopy distillation of Gaussian entanglement without heralding Gaussian measurements
- Electron dynamics induced by quantum cat-state light
- Orthogonal frequency-division multiplexing for simultaneous gate operations on multiple qubits via a shared control line