Weakly inhomogeneous electric fields add a distinct quantum-metric contribution to Bloch oscillations, yielding oscillatory transport with an intrinsic part and a scattering-time-dependent part that can saturate at high fields.
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Engineering a tunable phase θ between distinguishable particles shows that exchange statistics reshape entanglement dynamics, producing distinct purity and coherence regimes for bound versus neighboring-site initial states and a high-purity window at intermediate U.
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Quantum-metric Bloch oscillations in weakly inhomogeneous electric fields
Weakly inhomogeneous electric fields add a distinct quantum-metric contribution to Bloch oscillations, yielding oscillatory transport with an intrinsic part and a scattering-time-dependent part that can saturate at high fields.
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Entanglement dynamics of delocalized interacting particles
Engineering a tunable phase θ between distinguishable particles shows that exchange statistics reshape entanglement dynamics, producing distinct purity and coherence regimes for bound versus neighboring-site initial states and a high-purity window at intermediate U.