Configuration-dependent energy shifts split Dicke superradiance into selective collective decay channels that trap finite-momentum spin waves and stabilize entanglement generated solely by dissipation.
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2 Pith papers cite this work. Polarity classification is still indexing.
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2026 2verdicts
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A Morse-theoretic topological index defined on the imaginary part of non-Hermitian spectra is shown to count Fermi points and fix the effective central charge of the non-equilibrium steady state.
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Kinetically constrained superradiance
Configuration-dependent energy shifts split Dicke superradiance into selective collective decay channels that trap finite-momentum spin waves and stabilize entanglement generated solely by dissipation.
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Spectral-topology-induced criticality in non-Hermitian fermionic metals
A Morse-theoretic topological index defined on the imaginary part of non-Hermitian spectra is shown to count Fermi points and fix the effective central charge of the non-equilibrium steady state.