Time-dependent photonic phase modulation restores stationary two-photon polarization entanglement from quantum-dot sources by compensating for fine-structure splitting effects independently of emission time.
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A fan-out coupling architecture enables constant-depth direct quantum state tomography with built-in error mitigation via involutory repetition, experimentally validated up to 20 qubits on superconducting hardware.
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Restoring polarization entanglement from solid-state photon sources by time-dependent photonic control
Time-dependent photonic phase modulation restores stationary two-photon polarization entanglement from quantum-dot sources by compensating for fine-structure splitting effects independently of emission time.
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Efficient direct quantum state tomography using fan-out couplings
A fan-out coupling architecture enables constant-depth direct quantum state tomography with built-in error mitigation via involutory repetition, experimentally validated up to 20 qubits on superconducting hardware.