A Bank supplies GHZ or W-class entanglement to restore deterministic perfect teleportation from non-maximally entangled pairs via measurement-broadcast or transfer models.
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9 Pith papers cite this work. Polarity classification is still indexing.
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Single ultracold rubidium atom trapped in the evanescent field of an integrated silicon-nitride microring resonator, achieving single-atom cooperativity exceeding unity.
First experimental realization of spectral diffusion mitigation in a solid-state emitter via periodic optical pi-pulses, concentrating roughly half the absorption at a freely chosen target frequency and reducing the inhomogeneously broadened linewidth near the lifetime limit.
Proposes coherence-gated photon routing via real-time weak measurements of qubit coherence, enabling bounded-entropy RNG and entanglement fidelity certification.
Chlorine defects in 4H-SiC provide telecom-band emission, sub-nanosecond lifetimes, room-temperature ODMR, and hyperfine-resolved spin control, positioning them as a candidate for chip-scale quantum memories.
Quantum vault stores token copies at the bank to enable secure authentication without classical side information, achieving false-negative errors below 10^{-4} and attack success below 10^{-18} for 200-token bills on IBMQ hardware.
A nonlinear criterion detects coherence transfer in quantum networks with only two measurements of network-state populations, remaining valid even with uncharacterized checkpoint nodes, and is experimentally shown in four- and six-photon entanglement networks.
GKP-based repeaters with loss-tolerant protocols and modified parity encoding achieve secure key rates comparable to photonic systems while using orders of magnitude fewer qubits.
The paper overviews prominent SiC defects for spin-photon interfaces and models a memory-enhanced quantum communication protocol to extract parameters needed to outperform direct point-to-point links.
citing papers explorer
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Assisted quantum teleportation
A Bank supplies GHZ or W-class entanglement to restore deterministic perfect teleportation from non-maximally entangled pairs via measurement-broadcast or transfer models.
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Single-atom trapping in the evanescent field of an integrated photonic resonator
Single ultracold rubidium atom trapped in the evanescent field of an integrated silicon-nitride microring resonator, achieving single-atom cooperativity exceeding unity.
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Spectral Diffusion Mitigation with a Laser Pulse Sequence
First experimental realization of spectral diffusion mitigation in a solid-state emitter via periodic optical pi-pulses, concentrating roughly half the absorption at a freely chosen target frequency and reducing the inhomogeneously broadened linewidth near the lifetime limit.
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Coherence-gated quantum devices via real-time weak measurement
Proposes coherence-gated photon routing via real-time weak measurements of qubit coherence, enabling bounded-entropy RNG and entanglement fidelity certification.
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Telecom-band quantum memory with chlorine defects in silicon carbide
Chlorine defects in 4H-SiC provide telecom-band emission, sub-nanosecond lifetimes, room-temperature ODMR, and hyperfine-resolved spin control, positioning them as a candidate for chip-scale quantum memories.
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Quantum Vault: Secure Token Authentication Without Classical State Information Benchmarked on IBMQ
Quantum vault stores token copies at the bank to enable secure authentication without classical side information, achieving false-negative errors below 10^{-4} and attack success below 10^{-18} for 200-token bills on IBMQ hardware.
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Coherence Transfer in Quantum Networks
A nonlinear criterion detects coherence transfer in quantum networks with only two measurements of network-state populations, remaining valid even with uncharacterized checkpoint nodes, and is experimentally shown in four- and six-photon entanglement networks.
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Loss-Tolerant Quantum Communication via Bosonic-GKP-Parity-Encoding
GKP-based repeaters with loss-tolerant protocols and modified parity encoding achieve secure key rates comparable to photonic systems while using orders of magnitude fewer qubits.
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Quantum communication networks with defects in silicon carbide
The paper overviews prominent SiC defects for spin-photon interfaces and models a memory-enhanced quantum communication protocol to extract parameters needed to outperform direct point-to-point links.