Dynamical obstruction to localization in a disordered spin chain
- URL: http://arxiv.org/abs/2009.04501v2
- Date: Mon, 26 Oct 2020 17:36:31 GMT
- Title: Dynamical obstruction to localization in a disordered spin chain
- Authors: Dries Sels and Anatoli Polkovnikov
- Abstract summary: We analyze a one-dimensional XXZ spin chain in a disordered magnetic field.
A region of maximal chaos separates the many-body localized phase from the diffusive ergodic phase.
Instead of localizing, the system appears to enter a universal subdiffusive relaxation regime at moderate values of disorder.
- Score: 0.0
- License: http://arxiv.org/licenses/nonexclusive-distrib/1.0/
- Abstract: We analyze a one-dimensional XXZ spin chain in a disordered magnetic field.
As the main probes of the system's behavior we use the sensitivity of
eigenstates to adiabatic transformations, as expressed through the fidelity
susceptibility, in conjunction with the low frequency asymptotes of the
spectral function. We identify a region of maximal chaos -- with exponentially
enhanced susceptibility -- which separates the many-body localized phase from
the diffusive ergodic phase. This regime is characterized by slow transport and
we argue that the presence of such slow dynamics is incompatible with the
localization transition in the thermodynamic limit. Instead of localizing, the
system appears to enter a universal subdiffusive relaxation regime at moderate
values of disorder, where the spectral function of the local longitudinal
magnetization is inversely proportional to the frequency, corresponding to
logarithmic in time relaxation of its auto-correlation function.
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