The paper introduces an extensible 2D fluxonium qubit architecture using low-shunt-capacitance tunable couplers realized as quarton or fluxonium circuits to enable strong tunable interactions and multiple connections while supporting fast high-fidelity gates.
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3 Pith papers cite this work. Polarity classification is still indexing.
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quant-ph 3years
2026 3verdicts
UNVERDICTED 3representative citing papers
A tunable coupler design enables sub-100 ns two-qubit gates with errors below 10^{-4} between fluxonium qubits over 1 cm distances for modular architectures.
A system-level design methodology for scalable fluxonium processors with double-transmon couplers that supports high-fidelity gates, fast reset, and dispersive readout through frequency partitioning under realistic constraints.
citing papers explorer
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Extensible Fluxonium Architecture Using Tunable Couplers with Low Shunt Capacitance
The paper introduces an extensible 2D fluxonium qubit architecture using low-shunt-capacitance tunable couplers realized as quarton or fluxonium circuits to enable strong tunable interactions and multiple connections while supporting fast high-fidelity gates.
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Long-range tunable coupler for modular fluxonium quantum processors
A tunable coupler design enables sub-100 ns two-qubit gates with errors below 10^{-4} between fluxonium qubits over 1 cm distances for modular architectures.
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System-Level Design of Scalable Fluxonium Quantum Processors with Double-Transmon Couplers
A system-level design methodology for scalable fluxonium processors with double-transmon couplers that supports high-fidelity gates, fast reset, and dispersive readout through frequency partitioning under realistic constraints.