We study the finite-energy density phase diagram of spinless fermions with attractive interactions in one dimension in the presence of uncorrelated diagonal disorder. Unlike the case of repulsive interactions, a delocalized Luttinger-liquid phase persists at weak disorder in the ground state, which is a well-known result. We revisit the ground-state phase diagram and show that the recently introduced occupation-spectrum discontinuity computed from the eigenspectrum of one-particle density matrices is noticeably smaller in the Luttinger liquid compared to the localized regions. Moreover, we use the functional renormalization scheme to study the finite-size dependence of the conductance, which resolves the existence of the Luttinger ...
We study interacting fermions in one dimension subject to random, uncorrelated onsite disorder, a pa...
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 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 i...
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...
In this thesis, we study two different aspects of one-dimensional (1D) interacting spinless fermions...
In this thesis, we study two different aspects of one-dimensional (1D) interacting spinless fermions...
Noninteracting fermions in one dimension can undergo a localization-delocalization transition in the...
We study the interplay of interactions and disorder in a one-dimensional fermion lattice coupled adi...
We study interacting fermions in one dimension subject to random, uncorrelated onsite disorder, a pa...
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 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 i...
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...
In this thesis, we study two different aspects of one-dimensional (1D) interacting spinless fermions...
In this thesis, we study two different aspects of one-dimensional (1D) interacting spinless fermions...
Noninteracting fermions in one dimension can undergo a localization-delocalization transition in the...
We study the interplay of interactions and disorder in a one-dimensional fermion lattice coupled adi...
We study interacting fermions in one dimension subject to random, uncorrelated onsite disorder, a pa...
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...