Title of article
Many-body energy localization transition in periodically driven systems Original Research Article
Author/Authors
Luca D’Alessio، نويسنده , , Anatoli Polkovnikov، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2013
Pages
15
From page
19
To page
33
Abstract
According to the second law of thermodynamics the total entropy of a system is increased during almost any dynamical process. The positivity of the specific heat implies that the entropy increase is associated with heating. This is generally true both at the single particle level, like in the Fermi acceleration mechanism of charged particles reflected by magnetic mirrors, and for complex systems in everyday devices. Notable exceptions are known in noninteracting systems of particles moving in periodic potentials. Here the phenomenon of dynamical localization can prevent heating beyond certain threshold. The dynamical localization is known to occur both at classical (Fermi–Ulam model) and at quantum levels (kicked rotor). However, it was believed that driven ergodic systems will always heat without bound. Here, on the contrary, we report strong evidence of dynamical localization transition in both classical and quantum periodically driven ergodic systems in the thermodynamic limit. This phenomenon is reminiscent of many-body localization in energy space.
Keywords
Periodically driven systems , Floquet Hamiltonian , quantum many-body systems , Many-body localization
Journal title
Annals of Physics
Serial Year
2013
Journal title
Annals of Physics
Record number
1206755
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