Non-equilibrium quenched AIM dynamics are mapped to an effective non-interacting model with auxiliary static degrees of freedom via numerical optimization on ED and DMRG data.
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Canonical mapping of quantum-dot-superconductor clusters enables neural quantum-state calculations that reveal trivial singlet, Heisenberg-like, and critical regimes with 1D gaplessness and 2D triplet states.
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Mapping the non-equilibrium interacting Anderson Impurity Model to an effective Gaussian theory
Non-equilibrium quenched AIM dynamics are mapped to an effective non-interacting model with auxiliary static degrees of freedom via numerical optimization on ED and DMRG data.
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Correlated States in Quantum Dot Clusters Coupled to a Common Superconductor
Canonical mapping of quantum-dot-superconductor clusters enables neural quantum-state calculations that reveal trivial singlet, Heisenberg-like, and critical regimes with 1D gaplessness and 2D triplet states.