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Showing 1 to 5 of 5 for “"Superconducting quantum computing"”.

  1. Towards a Modular Superconducting Quantum Processor using Chiral Waveguide Quantum Electrodynamics

    As the field of superconducting quantum computing advances, networking qubits within a single system becomes essential for building modular processors. Modularity allows the system to circumvent scalability constraints and enable architectures and computational schemes that exploit non-local …

    mit Repository record for Towards a Modular Superconducting Quantum Processor using Chiral Waveguide Quantum Electrodynamics (opens in a new tab)

  2. Novel Gates with Superconducting Fluxonium Qubits

    Over the past two decades, superconducting qubits have emerged as a leading platform for gate-based quantum computation. Despite tremendous technological advancements, errors accumulating during gate operations are still a major bottleneck toward building a robust quantum computer. In general, …

    mit Repository record for Novel Gates with Superconducting Fluxonium Qubits (opens in a new tab)

  3. DEVICE DEVELOPMENT AND CHARACTERIZATION FOR SOLID-STATE QUANTUM COMPUTATION

    Solid-state quantum computing devices are among the most promising candidates for realizing quantum computers, due to the characteristics that they are more versatile and more easily scalable compared to other implementations, and the anticipated integration with existing silicon device fabrication …

    maryland Repository record for DEVICE DEVELOPMENT AND CHARACTERIZATION FOR SOLID-STATE QUANTUM COMPUTATION (opens in a new tab)

  4. Optimizing coherence and anharmonicity of superconducting qubit

    Quantum computers utilize qubits to store and process quantum information. In superconducting quantum computers, qubits are implemented as quantum superconducting resonant circuits. The circuits are operated only at the two energy states, which form the computational basis for the qubit. To …

    helsinki Repository record for Optimizing coherence and anharmonicity of superconducting qubit (opens in a new tab)

  5. Sources of noise in niobium-based superconducting quantum circuits

    Quantum computation is a fascinating field that combines novel physics with improvements in computation times and has been rapidly growing in the past few years. Using superconductors to form the qubits has the potential for large-scale computing, if the decoherence inherent in these devices can be …

    uiuc Repository record for Sources of noise in niobium-based superconducting quantum circuits (opens in a new tab)