Affiliation:
1. International School for Advanced Studies
2. National Institute of Nuclear Physics (at SISSA)
3. Abdus Salam International Centre for Theoretical Physics
4. Université de Lorraine
Abstract
We investigate the non-equilibrium dynamics of a one-dimensional
spin-1/2 XXZ model at zero-temperature in the regime
|\Delta|< 1|Δ|<1,
initially prepared in a product state with two domain walls i.e,
|\downarrow\dots\downarrow\uparrow\dots\uparrow\downarrow\dots\downarrow \rangle|↓…↓↑…↑↓…↓⟩.
At early times, the two domain walls evolve independently and only after
a calculable time a non-trivial interplay between the two emerges and
results in the occurrence of a split Fermi sea. For
\Delta=0Δ=0,
we derive exact asymptotic results for the magnetization and the spin
current by using a semi-classical Wigner function approach, and we
exactly determine the spreading of entanglement entropy exploiting the
recently developed tools of quantum fluctuating hydrodynamics. In the
interacting case, we analytically solve the Generalized Hydrodynamics
equation providing exact expressions for the conserved quantities. We
display some numerical results for the entanglement entropy also in the
interacting case and we propose a conjecture for its asymptotic
value.
Funder
Centre National de la Recherche Scientifique
European Research Council
Subject
General Physics and Astronomy
Cited by
13 articles.
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