We study the adiabatic quantum dynamics of an anisotropic spin-1 XY chain across a second-order quantum phase transition. The system is driven out of equilibrium by performing a quench on the uniaxialsingle-spin anisotropy, that is supposed to vary linearly in time. We show that, for sufficiently large system sizes, the excess energy after the quench admits a non-trivial scaling behavior that is not predictable by standard Kibble-Zurek arguments for isolated critical points or extended critical regions. This emerges from a competing effect of many accessible low-lying excited states, inside the whole continuous line of critical points.

Adiabatic dynamics in a spin-1 chain with uniaxial single-spin anisotropy / Canovi, Elena; Rossini, Davide; Fazio, Rosario; Santoro, Giuseppe Ernesto. - In: JOURNAL OF STATISTICAL MECHANICS: THEORY AND EXPERIMENT. - ISSN 1742-5468. - 2009:3(2009), pp. P03038.1-P03038.16. [10.1088/1742-5468/2009/03/P03038]

Adiabatic dynamics in a spin-1 chain with uniaxial single-spin anisotropy

Canovi, Elena;Santoro, Giuseppe Ernesto
2009-01-01

Abstract

We study the adiabatic quantum dynamics of an anisotropic spin-1 XY chain across a second-order quantum phase transition. The system is driven out of equilibrium by performing a quench on the uniaxialsingle-spin anisotropy, that is supposed to vary linearly in time. We show that, for sufficiently large system sizes, the excess energy after the quench admits a non-trivial scaling behavior that is not predictable by standard Kibble-Zurek arguments for isolated critical points or extended critical regions. This emerges from a competing effect of many accessible low-lying excited states, inside the whole continuous line of critical points.
2009
2009
3
1
16
P03038
https://arxiv.org/abs/0901.1384
Canovi, Elena; Rossini, Davide; Fazio, Rosario; Santoro, Giuseppe Ernesto
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.11767/16155
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