Please use this identifier to cite or link to this item: https://www.um.edu.mt/library/oar/handle/123456789/100138
Title: Quantum critical scaling under periodic driving
Authors: Lorenzo, Salvatore
Marino, Jamir
Plastina, Francesco
Palma, G. Massimo
Apollaro, Tony John George
Keywords: Quantum computing
Quantum physics
Critical phenomena (Physics)
Finite size scaling (Statistical physics)
Issue Date: 2017
Publisher: Nature
Citation: Lorenzo, S., Marino, J., Plastina, F., Palma, G. M., & Apollaro, T. J. (2017). Quantum critical scaling under periodic driving. Scientific Reports, 7(1), 1-12.
Abstract: Universality is key to the theory of phase transitions, stating that the equilibrium properties of observables near a phase transition can be classified according to few critical exponents. These exponents rule an universal scaling behaviour that witnesses the irrelevance of the model’s microscopic details at criticality. Here we discuss the persistence of such a scaling in a one-dimensional quantum Ising model under sinusoidal modulation in time of its transverse magnetic field. We show that scaling of various quantities (concurrence, entanglement entropy, magnetic and fidelity susceptibility) endures up to a stroboscopic time τbd, proportional to the size of the system. This behaviour is explained by noticing that the low-energy modes, responsible for the scaling properties, are resilient to the absorption of energy. Our results suggest that relevant features of the universality do hold also when the system is brought out-of-equilibrium by a periodic driving.
URI: https://www.um.edu.mt/library/oar/handle/123456789/100138
Appears in Collections:Scholarly Works - FacSciPhy

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