A transmon-plus-Purcell-filter-plus-notch hybrid coupler reaches simulated CZ F_avg=99.74%, F_min=99.62%, and max leakage 1.6e-3 by selectively damping leakage dressed states.
Control the qubit-qubit coupling with double superconducting resonators
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abstract
We experimentally studied the switching off processes in the double-resonator coupler superconducting quantum circuit. In both frequency and time-domain, we observed the variation of qubit-qubit effective coupling by tuning the frequency differences between qubits and the double-resonator coupler. According to the measurement results, by just shifting about 50 MHz of qubits' frequencies, we can tune the effective qubit-qubit coupling strength from switching off point to two qubit gate point (effective coupling larger than 5 MHz) in double-resonator superconducting quantum circuit.The double-resonator (coupler) superconducting quantum circuit has the advantage of simple fabrications, introducing less flux noises, reducing occupancy of dilution refrigerator cables,which might supply a promising platform for future large-scale superconducting quantum processors.
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quant-ph 1years
2026 1verdicts
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Purcell-Engineered Hybrid Coupler for Leakage-Suppressed Robust CZ Gates
A transmon-plus-Purcell-filter-plus-notch hybrid coupler reaches simulated CZ F_avg=99.74%, F_min=99.62%, and max leakage 1.6e-3 by selectively damping leakage dressed states.