In a waveguide-coupled atomic array under Bragg conditions, finite photon propagation delay causes atom-atom correlations to localize near the initially excited atom with a correlation length scaling as (γτ)^{-1/2}.
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In realistic E91 QKD networks, exponential decay of Bell correlations under loss and decoherence produces sparse operational entanglement graphs, yielding linear scaling of CHSH-usable pairs and Θ(N log N) authentication complexity under sparse-mixing assumptions.
Theoretical steady-state analysis shows two-photon resonance creates a dark state that boosts driving-field control over biphoton brightness and correlations in a Rydberg cavity-QED setup.
citing papers explorer
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Correlation Localization in Waveguide QED with Delayed Interactions
In a waveguide-coupled atomic array under Bragg conditions, finite photon propagation delay causes atom-atom correlations to localize near the initially excited atom with a correlation length scaling as (γτ)^{-1/2}.
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Emergent Operational Entanglement Graphs and Sub-Quadratic Authentication Scaling in Realistic E91 Quantum Networks
In realistic E91 QKD networks, exponential decay of Bell correlations under loss and decoherence produces sparse operational entanglement graphs, yielding linear scaling of CHSH-usable pairs and Θ(N log N) authentication complexity under sparse-mixing assumptions.
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Coherent manipulation of the biphoton generation in cavity-QED system
Theoretical steady-state analysis shows two-photon resonance creates a dark state that boosts driving-field control over biphoton brightness and correlations in a Rydberg cavity-QED setup.