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From localization to anomalous diffusion in the dynamics of coupled kicked rotors

Academic Article
Publication Date:
2018
abstract:
We study the effect of many-body quantum interference on the dynamics of coupled periodically kicked systems whose classical dynamics is chaotic and shows an unbounded energy increase. We specifically focus on an N-coupled kicked rotors model: We find that the interplay of quantumness and interactions dramatically modifies the system dynamics, inducing a transition between energy saturation and unbounded energy increase. We discuss this phenomenon both numerically and analytically through a mapping onto an N-dimensional Anderson model. The thermodynamic limit N->?, in particular, always shows unbounded energy growth. This dynamical delocalization is genuinely quantum and very different from the classical one: Using a mean-field approximation, we see that the system self-organizes so that the energy per site increases in time as a power law with exponent smaller than 1. This wealth of phenomena is a genuine effect of quantum interference: The classical system for N>=2 always behaves ergodically with an energy per site linearly increasing in time. Our results show that quantum mechanics can deeply alter the regularity or ergodicity properties of a many-body-driven system.
Iris type:
01.01 Articolo in rivista
Keywords:
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List of contributors:
Fazio, Rosario; Rossini, Davide
Handle:
https://iris.cnr.it/handle/20.500.14243/371232
Published in:
PHYSICAL REVIEW. E (ONLINE)
Journal
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http://www.scopus.com/inward/record.url?eid=2-s2.0-85042073128&partnerID=q2rCbXpz
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