Realization of Three-Qubit Quantum Error Correction with Superconducting Circuits
arXiv:1109.4948 · doi:10.1038/nature10786
Abstract
Quantum computers promise to solve certain problems exponentially faster than possible classically but are challenging to build because of their increased susceptibility to errors. Remarkably, however, it is possible to detect and correct errors without destroying coherence by using quantum error correcting codes [1]. The simplest of these are the three-qubit codes, which map a one-qubit state to an entangled three-qubit state and can correct any single phase-flip or bit-flip error of one of the three qubits, depending on the code used [2]. Here we demonstrate both codes in a superconducting circuit by encoding a quantum state as previously shown [3,4], inducing errors on all three qubits with some probability, and decoding the error syndrome by reversing the encoding process. This syndrome is then used as the input to a three-qubit gate which corrects the primary qubit if it was flipped. As the code can recover from a single error on any qubit, the fidelity of this process should decrease only quadratically with error probability. We implement the correcting three-qubit gate, known as a conditional-conditional NOT (CCNot) or Toffoli gate, using an interaction with the third excited state of a single qubit, in 63 ns. We find 85\pm1% fidelity to the expected classical action of this gate and 78\pm1% fidelity to the ideal quantum process matrix. Using it, we perform a single pass of both quantum bit- and phase-flip error correction with 76\pm0.5% process fidelity and demonstrate the predicted first-order insensitivity to errors. Concatenating these two codes and performing them on a nine-qubit device would correct arbitrary single-qubit errors. When combined with recent advances in superconducting qubit coherence times [5,6], this may lead to scalable quantum technology.
10 pages, 7 figures
References in corpus (10)
- Coupling Superconducting Qubits via a Cavity Bus
- Demonstration of Two-Qubit Algorithms with a Superconducting Quantum Processor
- Suppressing Charge Noise Decoherence in Superconducting Charge Qubits
- Implementation of a Toffoli Gate with Superconducting Circuits
- Realization of the quantum Toffoli gate with trapped ions
- Implementing the Quantum von Neumann Architecture with Superconducting Circuits
- High-Fidelity Readout in Circuit Quantum Electrodynamics Using the Jaynes-Cummings Nonlinearity
- Fast Reset and Suppressing Spontaneous Emission of a Superconducting Qubit
- Demonstration of sufficient control for two rounds of quantum error correction in a solid state ensemble quantum information processor
- Implementation of the three-qubit phase-flip error correction code with superconducting qubits
Cited by in corpus (355)
- Superconducting Qubits: Current State of Play
- Microwave photonics with superconducting quantum circuits
- State preservation by repetitive error detection in a superconducting quantum circuit
- Quantum information processing with superconducting circuits: a review
- Quantum trajectories and open many-body quantum systems
- Bidirectional and efficient conversion between microwave and optical light
- Quantum error correction in a solid-state hybrid spin register
- 1/f noise: implications for solid-state quantum information
- Superconducting qubit in waveguide cavity with coherence time approaching 0.1ms
- New material platform for superconducting transmon qubits with coherence times exceeding 0.3 milliseconds
- Detecting arbitrary quantum errors via stabilizer measurements on a sublattice of the surface code
- Circuit Quantum Electrodynamics with a Spin Qubit
- 10-qubit entanglement and parallel logic operations with a superconducting circuit
- Universal control and error correction in multi-qubit spin registers in diamond
- New class of quantum error-correcting codes for a bosonic mode
- Experimental Quantum Computations on a Topologically Encoded Qubit
- Implementation of a Toffoli Gate with Superconducting Circuits
- Superconducting Quantum Computing: A Review
- Repeated Quantum Error Detection in a Surface Code
- Quantum simulation and computing with Rydberg-interacting qubits
- Black-box superconducting circuit quantization
- Circuit QED lattices: towards quantum simulation with superconducting circuits
- Can One Trust Quantum Simulators?
- Witnessing Quantum Coherence: from solid-state to biological systems
- Cryogenic Control Architecture for Large-Scale Quantum Computing
- Realization of Deterministic Quantum Teleportation with Solid State Qubits
- Hardware-efficient autonomous quantum error correction
- Hybrid circuit cavity quantum electrodynamics with a micromechanical resonator
- Demonstration of quantum error correction and universal gate set on a binomial bosonic logical qubit
- Quantum Error Correction for Metrology
- Detecting bit-flip errors in a logical qubit using stabilizer measurements
- Repeated quantum error correction on a continuously encoded qubit by real-time feedback
- Experimental demonstration of fault-tolerant state preparation with superconducting qubits
- Quantum memories at finite temperature
- Demonstrating a Driven Reset Protocol of a Superconducting Qubit
- Quantum Simulation with Interacting Photons
- Fast and Unconditional All-Microwave Reset of a Superconducting Qubit
- Efficient learning of quantum noise
- Demonstration of fidelity improvement using dynamical decoupling with superconducting qubits
- Bosonic quantum error correction codes in superconducting quantum circuits
- Suppressing qubit dephasing using real-time Hamiltonian estimation
- Superconductor-semiconductor hybrid cavity quantum electrodynamics
- Error corrected quantum annealing with hundreds of qubits
- Entanglement in a quantum annealing processor
- Beating the break-even point with a discrete-variable-encoded logical qubit
- Thermal and Residual Excited-State Population in a 3D Transmon Qubit
- Quantum error correction with silicon spin qubits
- Josephson junction-embedded transmission-line resonators: from Kerr medium to in-line transmon
- Multi-photon quantum interference in a multi-port integrated photonic device
- Assessing the progress of trapped-ion processors towards fault-tolerant quantum computation
- Quantum metrology enhanced by repetitive quantum error correction
- Experimental realization of an intrinsically error-protected superconducting qubit
- Evading quantum mechanics
- Suppression of photon shot noise dephasing in a tunable coupling superconducting qubit
- Quantum information processing with bosonic qubits in circuit QED
- The SLH framework for modeling quantum input-output networks
- Repeated multi-qubit readout and feedback with a mixed-species trapped-ion register
- Correcting coherent errors with surface codes
- Entangling logical qubits with lattice surgery
- Quantum localization bounds Trotter errors in digital quantum simulation
- Two-dimensional Lattice Gauge Theories with Superconducting Quantum Circuits
- High-Fidelity Single-Shot Toffoli Gate via Quantum Control
- Removing leakage-induced correlated errors in superconducting quantum error correction
- A CNOT gate between multiphoton qubits encoded in two cavities
- Measurement-based quantum computation with trapped ions
- Poking holes and cutting corners to achieve Clifford gates with the surface code
- Diabatic gates for frequency-tunable superconducting qubits
- Preserving entanglement and nonlocality in solid-state qubits by dynamical decoupling
- Digital Quantum Simulation of Spin Systems in Superconducting Circuits
- Towards Realizing a Quantum Memory for a Superconducting Qubit: Storage and Retrieval of quantum states
- Error-transparent operations on a logical qubit protected by quantum error correction
- Moving beyond the transmon: Noise-protected superconducting quantum circuits
- Quantum tomography of an entangled three-spin state in silicon
- Protecting a superconducting qubit from energy decay by selection rule engineering
- Tunable coupler for realizing a controlled-phase gate with dynamically decoupled regime in a superconducting circuit
- Entanglement-assisted weak value amplification
- Input-output theory for spin-photon coupling in Si double quantum dots
- First-order sidebands in circuit QED using qubit frequency modulation
- Quantum Computation Based on Quantum Adiabatic Bifurcations of Kerr-Nonlinear Parametric Oscillators
- Low-overhead fault-tolerant quantum computing using long-range connectivity
- Implementation of the XY interaction family with calibration of a single pulse
- Topologically Protected Quantum State Transfer in a Chiral Spin Liquid
- Quantum Zeno dynamics of a field in a cavity
- High-fidelity three-qubit iToffoli gate for fixed-frequency superconducting qubits
- Fast multi-qubit gates by adiabatic evolution in interacting excited state manifolds
- Variational-State Quantum Metrology
- Induced self-stabilization in fractional quantum Hall states of light
- Learning in Quantum Control: High-Dimensional Global Optimization for Noisy Quantum Dynamics
- Manipulation and coherence of ultra-cold atoms on a superconducting atom chip
- Digital-Analog Quantum Simulations with Superconducting Circuits
- Microwave Quantum Optics with an Artificial Atom
- Continuous-variable geometric phase and its manipulation for quantum computation in a superconducting circuit
- Entanglement Stabilization using Parity Detection and Real-Time Feedback in Superconducting Circuits
- Multiplexed dispersive readout of superconducting phase qubits
- Quantum bits with Josephson junctions
- Overcoming leakage in scalable quantum error correction
- Single qubit gates in frequency-crowded transmon systems
- Optoelectromechanical transducer: reversible conversion between microwave and optical photons
- Calibrated decoders for experimental quantum error correction
- Rapid and Unconditional Parametric Reset Protocol for Tunable Superconducting Qubits
- Quantum Nonlinear Optics without Photons
- Active resonator reset in the nonlinear dispersive regime of circuit QED
- Optimal control for one-qubit quantum sensing
- Designing High-Fidelity Single-Shot Three-Qubit Gates: A Machine Learning Approach
- Comparing and combining measurement-based and driven-dissipative entanglement stabilization
- Steady state entanglement of two superconducting qubits engineered by dissipation
- Scalable quantum computing with qudits on a graph
- Five Two-Qubit Gates Are Necessary for Implementing Toffoli Gate
- Demonstration of Controlled-Phase Gates between Two Error-Correctable Photonic Qubits
- Recent progress in quantum simulation using superconducting circuits
- Single-step implementation of high fidelity -bit Toffoli gate
- Quantum gate learning in engineered qubit networks: Toffoli gate with always-on interactions
- Flexible superconducting Nb transmission lines on thin film polyimide for quantum computing applications
- Compressed sensing quantum process tomography for superconducting quantum gates
- Microwave multimode memory with an Er:YSiO spin ensemble
- Reinforcement Learning Decoders for Fault-Tolerant Quantum Computation
- Deutsch, Toffoli, and CNOT Gates via Rydberg Blockade of Neutral Atoms
- Universal quantum gates on microwave photons assisted by circuit quantum electrodynamics
- Tunable and Switchable Coupling Between Two Superconducting Resonators
- Stationary three-dimensional entanglement via dissipative Rydberg pumping
- Systematic Crosstalk Mitigation for Superconducting Qubits via Frequency-Aware Compilation
- Many-Body Interactions with Tunable-Coupling Transmon Qubits
- Fast universal quantum gates on microwave photons with all-resonance operations in circuit QED
- Excitation of superconducting qubits from hot non-equilibrium quasiparticles
- Methods for Measuring Magnetic Flux Crosstalk Between Tunable Transmons
- Tunable coupling to a mechanical oscillator circuit using a coherent feedback network
- Entanglement genesis by ancilla-based parity measurement in 2D circuit QED
- Stückelberg interference in a superconducting qubit under periodic latching modulation
- Coherent controlization using superconducting qubits
- Site-selective quantum control in an isotopically enriched 28Si/SiGe quadruple quantum dot
- Scalable algorithm simplification using quantum AND logic
- Fault-Tolerant Operation of a Quantum Error-Correction Code
- Low-cost Fredkin gate with auxiliary space
- Experimental implementation of encoded logical qubit operations in a perfect quantum error correcting code
- Observing the Nonequilibrium Dynamics of the Quantum Transverse-Field Ising Chain in Circuit QED
- Analog Superconducting Quantum Simulator for Holstein Polarons
- Continuous wave single photon transistor based on a superconducting circuit
- Fast parametric two-qubit gates with suppressed residual interaction using a parity-violated superconducting qubit
- Fast three-qubit Toffoli quantum gate based on the three-body Förster resonances in Rydberg atoms
- Analysing correlated noise on the surface code using adaptive decoding algorithms
- The boundaries and twist defects of the color code and their applications to topological quantum computation
- Energetic cost of Hamiltonian quantum gates
- Analytical approach to swift nonleaky entangling gates in superconducting qubits
- A logical qubit in a linear array of semiconductor quantum dots
- Dissipative creation of three-dimensional entangled state in optical cavity via spontaneous emission
- Fast multi-qubit gates through simultaneous two-qubit gates
- Chemical profiles of the oxides on tantalum in state of the art superconducting circuits
- Experimental exploration of five-qubit quantum error correcting code with superconducting qubits
- Cavity-Mediated Entanglement Generation Via Landau-Zener Interferometry
- The upside of noise: engineered dissipation as a resource in superconducting circuits
- Proposal for a coherent quantum memory for propagating microwave photons
- Realizing a Circuit Analog of an Optomechanical System with Longitudinally Coupled Superconducting Resonators
- Superconducting Quantum Simulator for Topological Order and the Toric Code
- Improved error thresholds for measurement-free error correction
- Simultaneous gates in frequency-crowded multilevel systems using fast, robust, analytic control shapes
- Floquet quantum simulation with superconducting qubits
- Quantum teleportation of physical qubits into logical code-spaces
- Dipolar Spin Models with Arrays of Superconducting Qubits
- A programmable three-qubit superconducting processor with all-to-all connectivity
- Implementation of pairwise longitudinal coupling in a three-qubit superconducting circuit
- Continuous quantum nondemolition measurement of the transverse component of a qubit
- Fault-tolerance thresholds for the surface code with fabrication errors
- Stabilizer quantum error correction toolbox for superconducting qubits
- Block synchronization for quantum information
- Polarization entanglement purification of nonlocal microwave photons based on the cross-Kerr effect in circuit QED
- Extensive characterization of a family of efficient three-qubit gates at the coherence limit
- Creation of quantum error correcting codes in the ultrastrong coupling regime
- The Road From Classical to Quantum Codes: A Hashing Bound Approaching Design Procedure
- Long-range quantum gate via Rydberg states of atoms in a thermal microwave cavity
- Symmetry criteria for quantum simulability of effective interactions
- Performance of two different quantum annealing correction codes
- Quantum Circuits for Measuring Levin-Wen Operators
- Measuring a transmon qubit in circuit QED: dressed squeezed states
- Error detection on quantum computers improves accuracy of chemical calculations
- Automated Error Correction in IBM Quantum Computer and Explicit Generalization
- Passive correction of quantum logical errors in a driven, dissipative system: a blueprint for an analog quantum code fabric
- Fault-tolerant protection of near-term trapped-ion topological qubits under realistic noise sources
- Efficient construction of three- and four-qubit quantum gates by global entangling gates
- Semiconductor-inspired design principles for superconducting quantum computing
- Collapse and Revival and Cat States with an N Spin System
- Variational circuit compiler for quantum error correction
- Quantum memories and error correction
- A superconducting microwave multivibrator produced by coherent feedback
- Robustness of error-suppressing entangling gates in cavity-coupled transmon qubits
- Long-lived, radiation-suppressed superconducting quantum bit in a planar geometry
- Fast microwave-driven three-qubit gates for cavity-coupled superconducting qubits
- Deep Q-learning decoder for depolarizing noise on the toric code
- Tunable-Cavity QED with Phase Qubits
- Artificial Neural Network based on SQUIDs: demonstration of network training and operation
- Accelerating adiabatic protocols for entangling two qubits in circuit QED
- Single-shot readout of a driven hybrid qubit in a GaAs double quantum dot
- Superconducting qubits on silicon substrates for quantum device integration
- Universal quantum multi-qubit entangling gates with auxiliary spaces
- Spatially Adiabatic Frequency Conversion in Optoelectromechanical Arrays
- ZZ freedom in two qubit gates
- Introduction to Quantum Error Correction and Fault Tolerance
- Collective modes in the fluxonium qubit
- Tailored codes for small quantum memories
- Supervised learning of time-independent Hamiltonians for gate design
- Simultaneous monitoring of fluxonium qubits in a waveguide
- Generation and stabilization of a three-qubit entangled W state in circuit QED via quantum feedback control
- Reducing intrinsic decoherence in a superconducting circuit by quantum error detection
- Magnetic field sensing with quantum error detection under the effect of energy relaxation
- Loss-tolerant all-photonic quantum repeater with generalized Shor code
- Quantum phase transition in a multi-connected superconducting Jaynes-Cummings lattice
- Quantum control for high-fidelity multi-qubit gates
- Unselective ground-state blockade of Rydberg atoms for implementing quantum gates
- Quantum State Discrimination Using the Minimum Average Number of Copies
- Circuit QED with qutrit: coupling three or more atoms via virtual photon exchange
- Entangling two distant non-interacting microwave modes
- Robust Quantum Gates against Correlated Noise in Integrated Quantum Chips
- Inductively coupled superconducting half wavelength resonators as persistent current traps for ultracold atoms
- Quantum-enhanced radiometry via approximate quantum error correction
- Improving Qubit Readout with Hidden Markov Models
- Controllable high-fidelity quantum state transfer and entanglement generation in circuit QED
- Quantum Computing: Vision and Challenges
- Shallow unitary decompositions of quantum Fredkin and Toffoli gates for connectivity-aware equivalent circuit averaging
- Qubit measurement error from coupling with a detuned neighbor in circuit QED
- Parametric amplification by coupled flux qubits
- The role of entropy in topological quantum error correction
- Noise-resistant Landau-Zener sweeps from geometrical curves
- Coupler-Assisted Leakage Reduction for Scalable Quantum Error Correction with Superconducting Qubits
- Demonstrating Quantum Error Correction that Extends the Lifetime of Quantum Information
- Entanglement concentration of microwave photons based on Kerr effect in circuit QED
- Experimental demonstration of entanglement-enabled universal quantum cloning in a circuit
- Soft Decoding of a Qubit Readout Apparatus
- Delocalized single-photon Dicke states and the Leggett- Garg inequality in solid state systems
- Efficient experimental design of high-fidelity three-qubit quantum gates via genetic programming
- Activation of metrologically useful genuine multipartite entanglement
- Quantum error correction with the color-Gottesman-Kitaev-Preskill code
- Simple quantum error detection and correction for superconducting qubits
- Enhancing Quantum Computation via Superposition of Quantum Gates
- Error correcting Bacon-Shor code with continuous measurement of noncommuting operators
- Superposed Quantum Error Mitigation
- Quantum Information Transfer between a Two-Level and a Four-Level Quantum System
- Preparation of entanglement between atoms in spatially separated cavities via fiber loss
- Always-On Quantum Error Tracking with Continuous Parity Measurements
- Transferring arbitrary d-dimensional quantum states of a superconducting qudit in circuit QED
- Engineering steady entanglement for trapped ions at finite temperature by dissipation
- Silicon Superconducting Quantum Interference Device
- High-rate quantum low-density parity-check codes assisted by reliable qubits
- Quantum state engineering by steering in the presence of errors
- Quantum error correction via less noisy qubits
- Simulating Zeno physics by quantum quench with superconducting circuits
- Hardware-Conscious Optimization of the Quantum Toffoli Gate
- A Toffoli Gate Decomposition via Echoed Cross-Resonance Gates
- Improved qubit bifurcation readout in the straddling regime of circuit QED
- Machine-learning based three-qubit gate for realization of a Toffoli gate with cQED-based transmon systems
- Entanglement concentration and purification of two-mode squeezed microwave photons in circuit QED
- Comparative study of quantum error correction strategies for the heavy-hexagonal lattice
- MLQD: A package for machine learning-based quantum dissipative dynamics
- Strategy for implementing stabilizer-based codes on solid-state qubits
- Individual Addressing in Quantum Computation through Spatial Refocusing
- Bacon-Shor code with continuous measurement of non-commuting operators
- Direct Implementation of High-Fidelity Three-Qubit Gates for Superconducting Processor with Tunable Couplers
- Universal distributed quantum computing on superconducting qutrits with dark photons
- Feasibility of single-shot realizations of conditional three-qubit gates in exchange-coupled qubit arrays with local control
- Efficient generation of NOON states on two microwave-photon resonators
- Native Conditional SWAP Operation with Superconducting Artificial Atoms
- Multipartite entanglement transfer in spin chains
- State of the art and prospects for quantum computing
- The quantum transverse-field Ising chain in circuit QED: effects of disorder on the nonequilibrium dynamics
- Enhancing Qubit Readout with Autoencoders
- LILLIPUT: A Lightweight Low-Latency Lookup-Table Based Decoder for Near-term Quantum Error Correction
- Testing a Quantum Error-Correcting Code on Various Platforms
- Universal resource-efficient topological measurement-based quantum computation via color-code-based cluster states
- Toffoli gate based on a three-body fine-structure-state-changing Förster resonance in Rydberg atoms
- Minimizing the discrimination time for quantum states of an artificial atom
- A three-dimensional Josephson parametric amplifier
- On-Chip Quantum Dot Light Source for Quantum State Readout
- Pump-probe scheme for electron-photon dynamics in hybrid conductor-cavity systems
- Time evolution of the quantum entanglement between qubits due to dynamical Lamb effect in the presence of dissipation
- An integrity measure to benchmark quantum error correcting memories
- Machine-learning-inspired quantum optimal control of nonadiabatic geometric quantum computation via reverse engineering
- Quantum error correction benchmarks for continuous weak parity measurements
- Improving quantum parameter estimation by monitoring quantum trajectories
- Implementation of standard quantum error correction codes for solid-state qubits
- Realisation of Qudits in Coupled Potential Wells
- Trapped-ion quantum error-correcting protocols using only global operations
- Characterizing quantum instruments: from non-demolition measurements to quantum error correction
- Efficient preparation of entangled states in cavity QED with Grover's algorithm
- The Category TOF
- Quantum Error Correction with Uniformly Mixed State Ancillae
- Demonstrating quantum error mitigation on logical qubits
- Direct spectrum analysis using a threshold detector with application to a superconducting circuit
- Tunable quantum entanglement of three qubits in a non-stationary cavity
- Fast simulation of planar Clifford circuits
- Characterization, synthesis, and optimization of quantum circuits over multiple-control -rotation gates: A systematic study
- Coupling qubits in circuit-QED cavities connected by a bridge qubit
- Resonator-Assisted Quantum Bath Engineering of a Flux Qubit
- Measurement based estimator scheme for continuous quantum error correction
- Quantum error correction using weak measurements
- Initial-state-dependent quantum speed limit for dissipative state preparation: Framework and optimization
- Analyzing the Toffoli gate in disordered circuit QED
- Verification of a resetting protocol for an uncontrolled superconducting qubit
- Dark-state photonic entanglement filters
- Generalized Number-Phase Lattice Encoding of a Bosonic Mode for Quantum Error Correction
- Improved autonomous error correction using variable dissipation in small logical qubit architectures
- Resource optimization for fault-tolerant quantum computing
- Mott insulator-superfluid phase transition in a detuned multi-connected Jaynes-Cummings lattice
- Low error measurement-free phase gates for qubus computation
- Single-qubit rotation algorithm with logarithmic Toffoli count and gate depth
- Optimal correction of independent and correlated errors
- Experimentally efficient methods for estimating the performance of quantum measurements
- Control and enhancement of interferometric coupling between two photonic qubits
- Error correcting power of small topological codes
- External control of qubit-photon interaction and multi-qubit reset in a dissipative quantum network
- Magic Mirror on the Wall, How to Benchmark Quantum Error Correction Codes, Overall ?
- Multipartite Entanglement and Quantum Sensing in a Spin-5/2 Heisenberg Molecular Iron(III) Triangle
- Flux control of superconducting qubits at dynamical sweet spots
- Reachability in Controlled Markovian Quantum Systems: An Operator-Theoretic Approach
- Long-range Ising interactions mediated by fields: probing the renormalisation of sound in crystals of trapped ions
- Experimental replication of single-qubit quantum phase gates
- Demonstration of teleportation-based error correction in the IBM quantum computer
- Improving Performance of an Analog Electronic Device Using Quantum Error Correction
- Variational quantum compiling for three-qubit gates design in quantum dots
- Multimode Purcell Filter for Superconducting-Qubit Reset and Readout with Intrinsic Purcell Protection
- Practical quantum error correction with the XZZX code and Kerr-cat qubits
- Ultranarrow spectral line of the radiation in double qubit-cavity ultrastrong coupling system
- Simplify proposal for realizing multiqubit tunable phase gate in circuit QED
- A practical guide for building superconducting quantum devices
- Constructing three-qubit unitary gates in terms of Schmidt rank and CNOT gates
- Scalability and high-efficiency of an -qubit Toffoli gate sphere via blockaded Rydberg atoms
- Asynchronous Operations on Qubits in Distributed Simulation Environments using QooSim
- No ((n, k, d < 127)) code can violate the quantum Hamming bound
- Universal set of Dynamically Protected Gates for Bipartite Qubit Networks II: Soft Pulse Implementation of the [[5,1,3]] Quantum Error Correcting Code
- Resonant effects in a SQUID qubit subjected to non adiabatic changes
- Constructing unextendible product bases from multiqubit ones
- Perturbative tomography of small errors in quantum gates
- Suppressing decoherence in quantum state transfer with unitary operations
- Simulation of a rapid qubit readout dependent on the transmission of a single fluxon
- Break-even point of the quantum repetition code
- Microwave-activated high-fidelity three-qubit gate scheme for fixed-frequency superconducting qubits
- Constructing and unextendible product bases and positive-partial-transpose entangled states
- unextendible product basis and genuinely entangled space
- Engineering long-range and multi-body interactions via global kinetic constraints
- Tunable anisotropic quantum Rabi model via a magnon--spin-qubit ensemble
- Quantum Optimal Control for Pure-State Preparation Using One Initial State
- Floquet-engineered system-reservoir interaction in the transverse field Ising model
- Circuit QED: Implementation of the three-qubit refined Deutsch-Jozsa quantum algorithm
- Practical implementation of Toffoli-based qubit rotation
- Quantum information and statistical mechanics: an introduction to frontier
- Proposal for implementing the three-qubit refined Deutsch-Jozsa quantum algorithm
- Quantum state transfer and controlled-phase gate on one-dimensional superconducting resonators assisted by a quantum bus
- Holographic Code Rate
- Detecting non-Abelian geometric phase in circuit QED
- Protocol for temperature sensing using a three-level transmon circuit
- Bias-preserving computation with the bit-flip code
- Global-Local Duality of Energetic Control Cost in Multipartite Quantum Correlated Systems
- Two-Polariton Blockade via Ultrastrong Light-Matter Coupling
- Relaxation times do not capture logical qubit dynamics
- Quantum Key Distribution: Bridging Theoretical Security Proofs, Practical Attacks, and Error Correction for Quantum-Augmented Networks
- Encoder Circuit Optimization for Non-Binary Quantum Error Correction Codes in Prime Dimensions: An Algorithmic Framework
- Two- and three-mode squeezing in a three-qubit entangled system
- Quantum Coin Method for Numerical Integration