A circular-modulated concatenated continuous driving (CMCCD) protocol for silicon qubits cancels counter-rotating errors via dual modulation and shows higher simulated fidelity plus improved experimental robustness to detuning and Rabi errors compared to standard Rabi or prior CCD drives.
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quant-ph 3years
2026 3verdicts
UNVERDICTED 3representative citing papers
A proposed chip-scale device combines a transmon qubit, SQUID, and nanomechanical resonator to achieve projected gravitational sensitivity of 100-1000 nGal per square root Hz with sub-millisecond interrogation times.
Energy-time entangled triphotons are generated in a six-level cold atomic system via two spontaneous six-wave mixing processes, producing threefold coincidences with asymmetrically damped Rabi oscillations and preserved temporal correlations characteristic of W-class entanglement.
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Concatenated continuous driving of silicon qubit by amplitude and phase modulation
A circular-modulated concatenated continuous driving (CMCCD) protocol for silicon qubits cancels counter-rotating errors via dual modulation and shows higher simulated fidelity plus improved experimental robustness to detuning and Rabi errors compared to standard Rabi or prior CCD drives.
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Chip-scale superconducting quantum gravimeter combining a SQUID, a transmon, and a nanomechanical resonator
A proposed chip-scale device combines a transmon qubit, SQUID, and nanomechanical resonator to achieve projected gravitational sensitivity of 100-1000 nGal per square root Hz with sub-millisecond interrogation times.
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Generation of energy-time entangled triphotons in a six-level cold atomic system
Energy-time entangled triphotons are generated in a six-level cold atomic system via two spontaneous six-wave mixing processes, producing threefold coincidences with asymmetrically damped Rabi oscillations and preserved temporal correlations characteristic of W-class entanglement.