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Tag: Two-Qubit Gates

  • CNOT Gates in Four-Qubit Fluxonium Systems Achieve Sub-100 ns Errors, Enabling Scalable Quantum Processors
    Quantum Algorithms

    CNOT Gates in Four-Qubit Fluxonium Systems Achieve Sub-100 ns Errors, Enabling Scalable Quantum Processors

    by Rohail T.December 16, 2025
  • High-fidelity Circuit Execution Achieved Via Compilation and Characterization of Imperfect Gates on 26 Qubits
    Quantum Computing Business News

    High-fidelity Circuit Execution Achieved Via Compilation and Characterization of Imperfect Gates on 26 Qubits

    by Rohail T.December 2, 2025
  • Fast Quantum Gates Achieve High Fidelity for Neutral Atoms Separated by 20 Um
    Quantum Physics

    Fast Quantum Gates Achieve High Fidelity for Neutral Atoms Separated by 20 Um

    by Rohail T.November 27, 2025
  • Physics-informed Neural Networks Enable High-Fidelity Quantum Gate Design Using Optimal Control
    Quantum Machine Learning

    Physics-informed Neural Networks Enable High-Fidelity Quantum Gate Design Using Optimal Control

    by Rohail T.November 17, 2025
  • Ultrafast Quantum Gates with Fully Quantized Free-Electron Quantum Optics Enable Universal Quantum Computation
    Quantum Computing

    Ultrafast Quantum Gates with Fully Quantized Free-Electron Quantum Optics Enable Universal Quantum Computation

    by Physics NewsNovember 17, 2025
  • Reinforcement Learning Achieves Robust Perfect Entangling Gates for Noisy Intermediate-scale Quantum Computers
    Quantum Physics

    Reinforcement Learning Achieves Robust Perfect Entangling Gates for Noisy Intermediate-scale Quantum Computers

    by Rohail T.November 14, 2025
  • Qubit Mapping Tailored to Advanced Quantum ISAs Reduces Routing Overhead, Enabling Circuits with up to 35% Fidelity
    Quantum Computing

    Qubit Mapping Tailored to Advanced Quantum ISAs Reduces Routing Overhead, Enabling Circuits with up to 35% Fidelity

    by Rohail T.November 13, 2025
  • Frequency- and Amplitude-Modulated Gates Achieve High-Fidelity Quantum Control with 0.1% Fidelity Improvement
    Quantum Algorithms

    Frequency- and Amplitude-Modulated Gates Achieve High-Fidelity Quantum Control with 0.1% Fidelity Improvement

    by Rohail T.November 11, 2025
  • Superconducting Circuits Achieve Phase Modulation for Tunable Coupling Strength in Quantum Systems
    Quantum Hardware

    Superconducting Circuits Achieve Phase Modulation for Tunable Coupling Strength in Quantum Systems

    by Rohail T.October 31, 2025
  • Hardware-efficient Formulation Simulates cavity-QED Hamiltonians, Leveraging Photonic Modes for Near-term Quantum Hardware
    Quantum Technology

    Hardware-efficient Formulation Simulates cavity-QED Hamiltonians, Leveraging Photonic Modes for Near-term Quantum Hardware

    by Rohail T.October 30, 2025
  • Optimizing VQE Ansatz Studies Tight-Binding Models with sd-Interaction and On-Site Coulomb Repulsion
    Quantum Algorithms, Quantum Research News

    Optimizing VQE Ansatz Studies Tight-Binding Models with sd-Interaction and On-Site Coulomb Repulsion

    by Rohail T.October 14, 2025
  • Dynamical Error Reshaping Suppresses Transmon Noise in Dual-Rail Erasure Qubits by Two Orders of Magnitude
    Quantum Algorithms, Quantum Research News

    Dynamical Error Reshaping Suppresses Transmon Noise in Dual-Rail Erasure Qubits by Two Orders of Magnitude

    by Rohail T.October 13, 2025
  • Switchable Spin-photon Coupling with Hole Spins in Single Quantum Dots Enables Long-range Interactions Via Three Identified Channels
    Quantum Algorithms, Quantum Research News

    Switchable Spin-photon Coupling with Hole Spins in Single Quantum Dots Enables Long-range Interactions Via Three Identified Channels

    by Rohail T.October 9, 2025
  • Strong Random Unitaries Achieve Optimal Circuit Depth of 16 for 8 Qubits
    Physics, Quantum Research News

    Strong Random Unitaries Achieve Optimal Circuit Depth of 16 for 8 Qubits

    by Rohail T.October 3, 2025
  • QAOA with Higher-Order Representations Scales Better, Reducing Qubit Requirements for Complex Problems
    Quantum Computing Business News, Quantum Research News

    QAOA with Higher-Order Representations Scales Better, Reducing Qubit Requirements for Complex Problems

    by Rohail T.September 29, 2025
  • Mixed-species Trapped-Ion Entangling Gates Achieve 99.3% and 99.7% Fidelity
    Quantum Features, Quantum Research News

    Mixed-species Trapped-Ion Entangling Gates Achieve 99.3% and 99.7% Fidelity

    by Rohail T.September 24, 2025
  • Fast Geometric Gates Achieve High Fidelity through Superadiabatic Transitionless Driving
    Quantum Computing

    Fast Geometric Gates Achieve High Fidelity through Superadiabatic Transitionless Driving

    by Quantum NewsSeptember 12, 2025
  • Aqcel Optimiser Cuts Circuit Costs, Improves Fidelity by Reducing Two-Qubit Gates
    Quantum Algorithms

    Aqcel Optimiser Cuts Circuit Costs, Improves Fidelity by Reducing Two-Qubit Gates

    by Quantum NewsSeptember 9, 2025
  • Adiabatic Protocol Prepares Thermal States at Finite Temperature, Conserving Entropy and Energy
    Quantum Computing

    Adiabatic Protocol Prepares Thermal States at Finite Temperature, Conserving Entropy and Energy

    by Quantum NewsSeptember 9, 2025
  • Superconducting Qubit Gates Achieve High Fidelity with Error Below, Enabling Scalable Computing
    Quantum Simulation

    Superconducting Qubit Gates Achieve High Fidelity with Error Below, Enabling Scalable Computing

    by Quantum NewsSeptember 8, 2025
  • Researchers Accelerate Quantum Circuit Transpilation with Rivet, Achieving up to 600% Speed Gains
    Quantum Research News

    Researchers Accelerate Quantum Circuit Transpilation with Rivet, Achieving up to 600% Speed Gains

    by Quantum NewsSeptember 1, 2025
  • Quantum Control: AI Boosts Fidelity for Scalable Qubits
    Quantum Research News

    Quantum Control: AI Boosts Fidelity for Scalable Qubits

    by Quantum NewsAugust 21, 2025
  • Erbium Ions Enable Coherent Control of Two-Qubit Electron-Electron Gates
    Quantum Research News

    Erbium Ions Enable Coherent Control of Two-Qubit Electron-Electron Gates

    by Quantum NewsAugust 13, 2025
  • Weak Measurements Verify Time-Order Invariance with IBM Quantum Devices
    Quantum Research News

    Weak Measurements Verify Time-Order Invariance with IBM Quantum Devices

    by Quantum NewsJuly 29, 2025
  • Measurement-Based Protocol Generates GHZ States on Noisy Intermediate-Scale Quantum Devices
    Quantum Research News

    Measurement-Based Protocol Generates GHZ States on Noisy Intermediate-Scale Quantum Devices

    by Quantum NewsJuly 28, 2025
  • ZX-Calculus and Dynamic Grouping Minimise Two-Qubit Gates in Quantum Circuits
    Quantum Algorithms

    ZX-Calculus and Dynamic Grouping Minimise Two-Qubit Gates in Quantum Circuits

    by Quantum NewsJuly 23, 2025
  • Low-Cost Magic State Distillation Scheme Reduces Qubit Count and Circuit Volume
    Quantum Algorithms

    Low-Cost Magic State Distillation Scheme Reduces Qubit Count and Circuit Volume

    by Quantum NewsJuly 19, 2025
  • Planar Quantum Architecture Enables Parallel Two-Qubit Gates with Minimal Overhead
    Quantum Hardware

    Planar Quantum Architecture Enables Parallel Two-Qubit Gates with Minimal Overhead

    by Quantum NewsJuly 15, 2025
  • Quantum Measurement Protocols Successfully Violate Time-Order Invariance, Confirming Weak Disturbance.
    Quantum Research News

    Quantum Measurement Protocols Successfully Violate Time-Order Invariance, Confirming Weak Disturbance.

    by Quantum NewsJuly 11, 2025
  • Quantum Algorithm Transpilation Improves Performance on Noisy Quantum Processors
    Quantum Programming

    Quantum Algorithm Transpilation Improves Performance on Noisy Quantum Processors

    by Quantum NewsMay 26, 2025
  • How Quantum Hardware Advancements Enable Improved Applications Through Shallow Measurements
    Quantum Research News

    How Quantum Hardware Advancements Enable Improved Applications Through Shallow Measurements

    by Quantum NewsApril 23, 2025
  • Quantum Circuit Optimization with Machine Learning for Noise Reduction
    Quantum Research News

    Quantum Circuit Optimization with Machine Learning for Noise Reduction

    by Quantum NewsApril 7, 2025
  • Scalable Quantum Solution for Aircraft Loading Optimization
    Technology News

    Scalable Quantum Solution for Aircraft Loading Optimization

    by Quantum NewsApril 5, 2025
  • Quantum Computing with Hardware-Efficient Variational Algorithms
    Quantum Algorithms

    Quantum Computing with Hardware-Efficient Variational Algorithms

    by Quantum NewsDecember 10, 2024
  • IonQ Surpasses 99.9 Percent Fidelity in Quantum Computing Breakthrough
    Quantum Computing Business News

    IonQ Surpasses 99.9 Percent Fidelity in Quantum Computing Breakthrough

    by Quantum NewsSeptember 17, 2024
  • Diraq Achieves 99 Percent Fidelity in Two-Qubit Gate Operations
    Quantum Computing Business News

    Diraq Achieves 99 Percent Fidelity in Two-Qubit Gate Operations

    by Quantum NewsAugust 26, 2024
  • Breakthrough Algorithm Reduces Quantum Computing Errors by Nearly Half
    Quantum Research News

    Breakthrough Algorithm Reduces Quantum Computing Errors by Nearly Half

    by Quantum NewsJuly 22, 2024
  • Google's Sycamore Gate and IBM Quantum Computers Advance Quantum Computing Potential
    Quantum Research News

    Google’s Sycamore Gate and IBM Quantum Computers Advance Quantum Computing Potential

    by Quantum NewsMay 29, 2024
  • IBM Quantum Team Enhances Efficiency with Native Two-Qubit Gates in Quantum Computing
    Quantum Computing Business News

    IBM Quantum Team Enhances Efficiency with Native Two-Qubit Gates in Quantum Computing

    by Quantum NewsMay 22, 2024
  • Semiconductor Spin Qubits Advance Quantum Computing, Leveraging Existing Transistor Technology
    Analog Computing

    Semiconductor Spin Qubits Advance Quantum Computing, Leveraging Existing Transistor Technology

    by Quantum NewsMay 9, 2024
  • Delft University Team Advances Quantum Computing with High-Fidelity Gates
    Quantum Research News

    Delft University Team Advances Quantum Computing with High-Fidelity Gates

    by Quantum NewsMarch 22, 2024
  • New Design for Two-Qubit Gates Enhances Fluxonium Qubits' Efficiency, Predicts AWS Research Team
    Quantum Research News

    New Design for Two-Qubit Gates Enhances Fluxonium Qubits’ Efficiency, Predicts AWS Research Team

    by Quantum NewsMarch 16, 2024
  • Ab Initio Modelling: A Predictive Tool for Optimising Quantum Processor Development
    Quantum Research News

    Ab Initio Modelling: A Predictive Tool for Optimising Quantum Processor Development

    by Quantum NewsMarch 7, 2024
  • Researcher Explores Impact of Magnetic Noises on Quantum Computing's Two-Qubit Gates
    Analog Computing, Quantum Research News

    Researcher Explores Impact of Magnetic Noises on Quantum Computing’s Two-Qubit Gates

    by Quantum NewsFebruary 21, 2024
  • Researchers Develop Faster, Robust Two-Qubit Gates for Quantum Computing Using Rydberg Atoms
    Physics

    Researchers Develop Faster, Robust Two-Qubit Gates for Quantum Computing Using Rydberg Atoms

    by Quantum NewsFebruary 7, 2024

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