The emergent integrability of the many-body localized phase is naturally understood in terms of localized quasiparticles. As a result, the occupations of the one-particle density matrix in eigenstates show a Fermi-liquid-like discontinuity. Here, we show that in the steady state reached at long times after a global quench from a perfect density-wave state, this occupation discontinuity is absent, reminiscent of a Fermi liquid at a finite temperature, while the full occupation function remains strongly nonthermal. We discuss how one can understand this as a consequence of the local structure of the density-wave state and the resulting partial occupation of quasiparticles. This partial occupation can be controlled by tuning the initial state ...
We study the finite-energy density phase diagram of spinless fermions with attractive interactions i...
For a quantum system to be permanently out-of-equilibrium, some non-trivial mechanism must be at pla...
For a quantum system to be permanently out-of-equilibrium, some non-trivial mechanism must be at pla...
The emergent integrability of the many-body localized phase is naturally understood in terms of loca...
The emergent integrability of the many-body localized phase is naturally understood in terms of loca...
We study interacting fermions in one dimension subject to random, uncorrelated onsite disorder, a pa...
We study interacting fermions in one dimension subject to random, uncorrelated onsite disorder, a pa...
We study interacting fermions in one dimension subject to random, uncorrelated onsite disorder, a pa...
We show that the one-particle density matrix ρ can be used to characterize the interaction-driven ma...
We study the finite-energy density phase diagram of spinless fermions with attractive interactions i...
We study the finite-energy density phase diagram of spinless fermions with attractive interactions i...
We study the finite-energy density phase diagram of spinless fermions with attractive interactions i...
We study the finite-energy density phase diagram of spinless fermions with attractive interactions i...
We study the finite-energy density phase diagram of spinless fermions with attractive interactions i...
We study the finite-energy density phase diagram of spinless fermions with attractive interactions ...
We study the finite-energy density phase diagram of spinless fermions with attractive interactions i...
For a quantum system to be permanently out-of-equilibrium, some non-trivial mechanism must be at pla...
For a quantum system to be permanently out-of-equilibrium, some non-trivial mechanism must be at pla...
The emergent integrability of the many-body localized phase is naturally understood in terms of loca...
The emergent integrability of the many-body localized phase is naturally understood in terms of loca...
We study interacting fermions in one dimension subject to random, uncorrelated onsite disorder, a pa...
We study interacting fermions in one dimension subject to random, uncorrelated onsite disorder, a pa...
We study interacting fermions in one dimension subject to random, uncorrelated onsite disorder, a pa...
We show that the one-particle density matrix ρ can be used to characterize the interaction-driven ma...
We study the finite-energy density phase diagram of spinless fermions with attractive interactions i...
We study the finite-energy density phase diagram of spinless fermions with attractive interactions i...
We study the finite-energy density phase diagram of spinless fermions with attractive interactions i...
We study the finite-energy density phase diagram of spinless fermions with attractive interactions i...
We study the finite-energy density phase diagram of spinless fermions with attractive interactions i...
We study the finite-energy density phase diagram of spinless fermions with attractive interactions ...
We study the finite-energy density phase diagram of spinless fermions with attractive interactions i...
For a quantum system to be permanently out-of-equilibrium, some non-trivial mechanism must be at pla...
For a quantum system to be permanently out-of-equilibrium, some non-trivial mechanism must be at pla...