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Finite-temperature transport in one-dimensional quantum lattice models
Over the last decade impressive progress has been made in the theoretical understanding
of transport properties of clean, one-dimensional quantum lattice systems. Many physically …
of transport properties of clean, one-dimensional quantum lattice systems. Many physically …
Quantum chaos and thermalization in isolated systems of interacting particles
This review is devoted to the problem of thermalization in a small isolated conglomerate of
interacting constituents. A variety of physically important systems of intensive current interest …
interacting constituents. A variety of physically important systems of intensive current interest …
Exploring localization in nuclear spin chains
Characterizing out-of-equilibrium many-body dynamics is a complex but crucial task for
quantum applications and understanding fundamental phenomena. A central question is the …
quantum applications and understanding fundamental phenomena. A central question is the …
Floquet prethermalization in dipolar spin chains
Periodically driven Floquet quantum systems could provide a promising platform to
investigate novel physics out of equilibrium, but the drive generically heats the system to a …
investigate novel physics out of equilibrium, but the drive generically heats the system to a …
[PDF][PDF] Loschmidt echo
arxiv:1206.6348v1 [nlin.CD] 27 Jun 2012 Page 1 arxiv:1206.6348v1 [nlin.CD] 27 Jun 2012
Loschmidt Echo Arseni Goussev1, Rodolfo A. Jalabert2, Horacio M. Pastawski3, and Diego …
Loschmidt Echo Arseni Goussev1, Rodolfo A. Jalabert2, Horacio M. Pastawski3, and Diego …
Emergent universal quench dynamics in randomly interacting spin models
Universal behaviour often emerges in the low-energy equilibrium physics of quantum many-
body systems, despite their microscopic differences. Recently, there has been a growing …
body systems, despite their microscopic differences. Recently, there has been a growing …
Emergent prethermalization signatures in out-of-time ordered correlations
How a many-body quantum system thermalizes—or fails to do so—under its own interaction
is a fundamental yet elusive concept. Here we demonstrate nuclear magnetic resonance …
is a fundamental yet elusive concept. Here we demonstrate nuclear magnetic resonance …
Local quenches with global effects in interacting quantum systems
We study one-dimensional lattices of interacting spins-1 2 and show that the effects of
quenching the amplitude of a local magnetic field applied to a single site of the lattice can be …
quenching the amplitude of a local magnetic field applied to a single site of the lattice can be …
Observation of Complex Bound States in the Spin- Heisenberg Chain <?format ?>Using Local Quantum Quenches
We consider the nonequilibrium evolution in the spin-1/2 XXZ Heisenberg chain for fixed
magnetization after a local quantum quench. This model is equivalent to interacting spinless …
magnetization after a local quantum quench. This model is equivalent to interacting spinless …
Exploiting disorder to probe spin and energy hydrodynamics
An outstanding challenge in large-scale quantum platforms is to simultaneously achieve
strong interactions, giving rise to the most interesting behaviours, and local addressing …
strong interactions, giving rise to the most interesting behaviours, and local addressing …