Eigenstates in interacting integrable models match random superpositions of polynomially many Gaussian states for entanglement and non-Gaussianity, while nonintegrable models match exponentially many.
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Rydberg atoms in a Stark manifold prepared in the center generally fail to reach the dynamical-typicality thermal distribution across tested densities, approaching it only at the highest density.
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One-Body Purity, Non-Gaussianity, and Entanglement in Interacting Integrable Models
Eigenstates in interacting integrable models match random superpositions of polynomially many Gaussian states for entanglement and non-Gaussianity, while nonintegrable models match exponentially many.
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Thermalization within a Stark manifold through Rydberg atom interactions
Rydberg atoms in a Stark manifold prepared in the center generally fail to reach the dynamical-typicality thermal distribution across tested densities, approaching it only at the highest density.