Non-ergodic states induced by impurity levels in quantum spin chains

The semi-infinite XY spin chain with an impurity at the boundary has been chosen as a prototype of interacting many-body systems to test for non-ergodic behavior. The model is exactly solvable in analytic way in the thermodynamic limit, where energy eigenstates and the spectrum are obtained in close...

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Veröffentlicht in:The European physical journal. ST, Special topics Special topics, 2018-09, Vol.227 (3-4), p.301-311
Hauptverfasser: García Rodríguez, A. O., Cabrera, G. G.
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description The semi-infinite XY spin chain with an impurity at the boundary has been chosen as a prototype of interacting many-body systems to test for non-ergodic behavior. The model is exactly solvable in analytic way in the thermodynamic limit, where energy eigenstates and the spectrum are obtained in closed form. In addition of a continuous band, localized states may split off from the continuum, for some values of the impurity parameters. In the next step, after the preparation of an arbitrary non-equilibrium state, we observe the time evolution of the site magnetization. Relaxation properties are described by the long-time behavior, which is estimated using the stationary phase method. Absence of localized states defines an ergodic region in parameter space, where the system relaxes to a homogeneous magnetization. Out of this region, impurity levels split from the band, and localization phenomena may lead to non-ergodicity.
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subjects Atomic
Chains
Classical and Continuum Physics
Condensed Matter Physics
Dynamics and Applications
Eigenvectors
Ergodic processes
Impurities
Magnetic properties
Magnetization
Materials Science
Measurement Science and Instrumentation
Molecular
Optical and Plasma Physics
Parameters
Physics
Physics and Astronomy
Quantum Systems In and Out of Equilibrium - Fundamentals
Regular Article
title Non-ergodic states induced by impurity levels in quantum spin chains
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