Universal Dynamics of Inhomogeneous Quantum Phase Transitions: Suppressing Defect Formation
ORAL
Abstract
In the nonadiabatic dynamics across a quantum phase transition, the Kibble-Zurek mechanism predicts that the formation of topological defects is suppressed as a universal power law with the quench time. In inhomogeneous systems, the critical point is reached locally and causality reduces the effective system size for defect formation to regions where the velocity of the critical front is slower than the second-sound velocity, favoring adiabatic dynamics. The reduced density of excitations exhibits a much steeper dependence on the quench rate and is also described by a universal power-law, that we demonstrated in a quantum Ising chain.
*F. J. G.-R. acknowledges financial support from Facultad de Ciencias at Universidad de Los Andes. Funding support from the John Templeton Foundation and UMass Boston (project P20150000029279) is further acknowledged.
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Presenters
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Fernando Gómez-Ruiz
- University of Massachusetts Boston
- Physics, Universidad de Los Andes