Athermality of post-quench GGEs is often anomalously small and non-analytic at post-quench quantum critical points, inherited from GGE entropy singularities.
Title resolution pending
4 Pith papers cite this work. Polarity classification is still indexing.
representative citing papers
Bloch oscillations emerge in continuum interacting quantum gases via strong interactions and are captured by generalized hydrodynamics in the Yang-Gaudin model, with finite-density renormalization from bound states.
Experimental realization of fractional Fermi seas in excited 1D Bose gas via interaction-strength ramps, with Friedel oscillations as signatures.
Multi-parameter sudden-quench Otto cycles outperform single-parameter versions in net work, efficiency, and refrigerator coefficient of performance for a 1D Bose gas and Ising model.
citing papers explorer
-
Athermality of generalized Gibbs ensembles
Athermality of post-quench GGEs is often anomalously small and non-analytic at post-quench quantum critical points, inherited from GGE entropy singularities.
-
Generalized Hydrodynamics of Bloch Oscillations in the Absence of a Lattice
Bloch oscillations emerge in continuum interacting quantum gases via strong interactions and are captured by generalized hydrodynamics in the Yang-Gaudin model, with finite-density renormalization from bound states.
-
Realization of fractional Fermi seas
Experimental realization of fractional Fermi seas in excited 1D Bose gas via interaction-strength ramps, with Friedel oscillations as signatures.
-
Enhanced performance of sudden-quench quantum Otto cycles via multi-parameter control
Multi-parameter sudden-quench Otto cycles outperform single-parameter versions in net work, efficiency, and refrigerator coefficient of performance for a 1D Bose gas and Ising model.