Dissipation in chiral transport quenches partition noise by relaxing electrons to lower states, leaving only U(1)-protected residual noise, while selective heating reveals competing contributions and an inversion scheme reconstructs the occupancy distribution from noise cumulants.
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A 1D Mott insulator exhibits persistent, strengthening interference peaks and oscillatory exponentially decaying coherence across lattice sites, matching QMC simulations.
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Open Quantum Theory of Shot Noise in Dissipative Chiral Transport
Dissipation in chiral transport quenches partition noise by relaxing electrons to lower states, leaving only U(1)-protected residual noise, while selective heating reveals competing contributions and an inversion scheme reconstructs the occupancy distribution from noise cumulants.
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The wave nature of a Mott insulator
A 1D Mott insulator exhibits persistent, strengthening interference peaks and oscillatory exponentially decaying coherence across lattice sites, matching QMC simulations.