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fluxonium qubits

  • A complex electronic circuit board glows with vibrant blue and gold hues, showcasing intricate pathways and components.
    Quantum Hardware, Quantum Physics

    Engineers Link Fluxonium Gate Speed to Qubit-Pad Geometry

    by Muhammad Rohail T.August 5, 2026
  • A complex circuit board with numerous interconnected components is displayed against a dark blue background, illuminated with glowing teal lines.
    Quantum Research News, Quantum Hardware

    99.99% Fidelity Achieved With Fluxonium Qubits, 1QBit Reports

    by Dr. DonovanJuly 19, 2026
  • Logic gate diagram with bidirectional signal arrows
    Quantum Hardware, Quantum Physics

    IFQs Promise Highly Effective Coherence Times With New Gates

    by Dr. DonovanMay 28, 2026
  • Quantum lab bench with coherent wave visualisation
    Quantum Computing, Quantum Hardware

    Fluxonium Qubits Mitigate Interactions, Enabling High-Fidelity Gates in Scalable Systems

    by Ivy DelaneyApril 26, 2026
  • Quantum Bits Now Link with Mechanical Devices for Improved Control
    Quantum Hardware

    Quantum Bits Now Link with Mechanical Devices for Improved Control

    by FuturistApril 23, 2026
  • Quantum Chip Design Overcomes Distance Limits for Faster Processing
    Quantum Algorithms, Quantum Hardware

    Quantum Chip Design Achieves Faster, Distant Processing

    by Ivy DelaneyApril 15, 2026
  • Dynamical Sweet Spots Achieve 3-5x Coherence Enhancement in Superconducting Qubits
    Quantum Hardware

    Superconducting Qubits Gain 3-5x Coherence Boost

    by Muhammad Rohail T.January 29, 2026
  • CNOT Gates in Four-Qubit Fluxonium Systems Achieve Sub-100 ns Errors, Enabling Scalable Quantum Processors
    Quantum Algorithms

    Fluxonium Qubits: Sub-100ns CNOT Errors for Scalable

    by Muhammad Rohail T.December 16, 2025
  • Fluxonium-transmon System Achieves High-Fidelity Gates with Coherent Errors Below, Enabling Scalable Quantum Processors
    Quantum Computing

    Fluxonium-Transmon System Achieves High-Fidelity Gates

    by Dr. DonovanSeptember 14, 2025
  • Disordered Superconductors with High Kinetic Inductance for Quantum Circuits
    Physics

    Disordered Superconductors Boost Quantum Circuits

    by Dr. DonovanApril 11, 2025
  • MIT Researchers Unveil Insights into Fluxonium Qubits, Advancing Quantum Computing
    Quantum Research News

    Fluxonium Qubits Advance Quantum Computing

    by Dr. DonovanApril 12, 2024
  • New Design for Two-Qubit Gates Enhances Fluxonium Qubits' Efficiency, Predicts AWS Research Team
    Quantum Research News

    Fluxonium Qubits: New Gate Design Boosts Efficiency

    by Dr. DonovanMarch 16, 2024
  • Revolutionizing Quantum Computing: Efficient Initialization of Fluxonium Qubits Achieves 99% Fidelity
    Quantum Research News

    Fluxonium Qubits: 99% Fidelity Initialization Achieved

    by Dr. DonovanFebruary 16, 2024
  • Fluxonium Qubits Give Quantum Circuits with Unprecedented Low Frequency and High Sensitivity
    Quantum Research News

    Fluxonium Qubits Boost Circuit Sensitivity

    by Dr. DonovanFebruary 5, 2024
  • D-Wave Quantum's Advantage2 Prototype Shows Promise in Quantum Error Mitigation
    Quantum Algorithms

    D-Wave Advantage2 Shows Quantum Error Mitigation

    by Paul JamesNovember 15, 2023
  • D-Wave Fluxonium Qubits Advance Quantum Computing
    Quantum Hardware

    D-Wave Fluxonium Qubits Advance Quantum Computing

    by The QuantSeptember 13, 2023

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