First experimental realization of backward retrieval in Stark-echo-modulated spin-wave quantum memory with >97% fidelity.
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9 Pith papers cite this work. Polarity classification is still indexing.
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An enhanced CV-MDI-QKD scheme correlates data and ancilla noise via symplectic transforms within GKP error correction to achieve fault-tolerant suppression of loss and operation errors, with numerical composable security shown for wired and wireless links under Gaussian attacks.
A QFC hub achieves 2 THz pump tunability via a dispersion sweet spot in PPLN and distributes polarization-encoded single photons across 16 ITU-T DWDM channels while preserving quantum information.
A bound state in the doublon continuum enables high-fidelity preparation of distant four-atom entangled states and coherent transfer of quantum states between nodes in a waveguide QED platform.
Experimental demonstration of a Rydberg-polariton single-photon emitter that redirects photons to multiple output modes via Raman transition and retrieval-laser steering, with a proposed N-channel router at unity efficiency and >10 μs lifetime.
Chiral unidirectional interaction in cascaded cavity prolongs excited state lifetime in qubit-magnon system, suppressing re-excitation to increase purity and number of two-magnon bundles.
A modified Jaynes-Cummings-Hubbard chain with resonator-TLS sites and TLS-TLS links enables coherent single-excitation transport and type conversion along the lattice.
Coupling storage qubits to driven qubits in chiral waveguide QED tailors the steady state for higher and more loss-resilient remote entanglement between the storage qubits.
Proposes a cavity-based single-atom quantum repeater protocol claiming secret key rates of a few to hundreds of Hz over 1000 km via 10-atom multiplexing.
citing papers explorer
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Realization of Backward Retrieval in a Stark-modulated Spin-wave Quantum Memory
First experimental realization of backward retrieval in Stark-echo-modulated spin-wave quantum memory with >97% fidelity.
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Fault-tolerant measurement-device-independent quantum key distribution with noisy non-Gaussian error correction
An enhanced CV-MDI-QKD scheme correlates data and ancilla noise via symplectic transforms within GKP error correction to achieve fault-tolerant suppression of loss and operation errors, with numerical composable security shown for wired and wireless links under Gaussian attacks.
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A quantum frequency conversion hub interfacing with DWDM networks
A QFC hub achieves 2 THz pump tunability via a dispersion sweet spot in PPLN and distributes polarization-encoded single photons across 16 ITU-T DWDM channels while preserving quantum information.
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Quantum state preparation and transfer based on the bound state in the doublon continuum
A bound state in the doublon continuum enables high-fidelity preparation of distant four-atom entangled states and coherent transfer of quantum states between nodes in a waveguide QED platform.
-
Direction switchable single-photon emitter using a Rydberg polariton
Experimental demonstration of a Rydberg-polariton single-photon emitter that redirects photons to multiple output modes via Raman transition and retrieval-laser steering, with a proposed N-channel router at unity efficiency and >10 μs lifetime.
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Chiral interaction enhanced magnon bundle emission
Chiral unidirectional interaction in cascaded cavity prolongs excited state lifetime in qubit-magnon system, suppressing re-excitation to increase purity and number of two-magnon bundles.
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Single excitation swap in a modified Jaynes-Cummings-Hubbard lattice
A modified Jaynes-Cummings-Hubbard chain with resonator-TLS sites and TLS-TLS links enables coherent single-excitation transport and type conversion along the lattice.
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Loss resilience of driven-dissipative remote entanglement in chiral waveguide quantum electrodynamics
Coupling storage qubits to driven qubits in chiral waveguide QED tailors the steady state for higher and more loss-resilient remote entanglement between the storage qubits.
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Efficient Quantum Repeater with Single Atoms in Cavities
Proposes a cavity-based single-atom quantum repeater protocol claiming secret key rates of a few to hundreds of Hz over 1000 km via 10-atom multiplexing.