After a decade of many claims to the opposite, there now is a growing consensus that generic disordered quantum wires, e.g. the XXZ-Heisenberg chain, do not exhibit many-body localization (MBL) - at least not in a strict sense within a reasonable window of disorder values W. Specifically, computational studies of short wires exhibit an extremely slow but unmistakable flow of physical observables with increasing time and system size (``creep") that is consistently directed away from (strict) localization. Our work sheds fresh light on delocalization physics: Strong sample-to-sample fluctuations indicate the absence of a generic time scale, i.e. of a naive ``clock rate"; however, the concept of an ``internal clock" survives, at least in an en...
We investigate how information spreads in three paradigmatic one-dimensional models with spatial dis...
We study the effect of spatially correlated classical noise on both Anderson and many-body localizat...
We theoretically study the quench dynamics for an isolated Heisenberg spin chain with a random on-si...
After a decade of many claims to the opposite, there now is a growing consensus that generic disorde...
Many-body localization is a fascinating theoretical concept describing the intricate interplay of qu...
We investigate charge relaxation in disordered and quasiperiodic quantum wires of spinless fermions ...
In this work we study the effect of static disorder on the growth of commutators—a probe of informat...
Recent numerical work by Bardarson, Pollmann, and Moore revealed a slow, logarithmic in time, growth...
We investigate charge relaxation in quantum wires of spinless disordered fermions (t-V model). Our o...
We are able to detect clear signatures of dephasing—a distinct trait of many-body localization (MBL)...
The many-body localization transition is a dynamical quantum phase transition between a localized an...
Many-body localization (MBL) has emerged as a novel paradigm for robust ergodicity breaking in close...
We study time dynamics of 1D disordered Heisenberg spin-1/2 chain focusing on a regime of large syst...
Many-body localization (MBL) of a disordered interacting boson system in one dimension is studied nu...
We propose a new approach to probing ergodicity and its breakdown in one-dimensional quantum many-bo...
We investigate how information spreads in three paradigmatic one-dimensional models with spatial dis...
We study the effect of spatially correlated classical noise on both Anderson and many-body localizat...
We theoretically study the quench dynamics for an isolated Heisenberg spin chain with a random on-si...
After a decade of many claims to the opposite, there now is a growing consensus that generic disorde...
Many-body localization is a fascinating theoretical concept describing the intricate interplay of qu...
We investigate charge relaxation in disordered and quasiperiodic quantum wires of spinless fermions ...
In this work we study the effect of static disorder on the growth of commutators—a probe of informat...
Recent numerical work by Bardarson, Pollmann, and Moore revealed a slow, logarithmic in time, growth...
We investigate charge relaxation in quantum wires of spinless disordered fermions (t-V model). Our o...
We are able to detect clear signatures of dephasing—a distinct trait of many-body localization (MBL)...
The many-body localization transition is a dynamical quantum phase transition between a localized an...
Many-body localization (MBL) has emerged as a novel paradigm for robust ergodicity breaking in close...
We study time dynamics of 1D disordered Heisenberg spin-1/2 chain focusing on a regime of large syst...
Many-body localization (MBL) of a disordered interacting boson system in one dimension is studied nu...
We propose a new approach to probing ergodicity and its breakdown in one-dimensional quantum many-bo...
We investigate how information spreads in three paradigmatic one-dimensional models with spatial dis...
We study the effect of spatially correlated classical noise on both Anderson and many-body localizat...
We theoretically study the quench dynamics for an isolated Heisenberg spin chain with a random on-si...