Phase Transitions Between Different Spin-Glass Phases and Between Different Chaoses in Quenched Random Chiral Systems

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Date

2017

Authors

Çağlar, Tolga
Berker, A. Nihat

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Journal ISSN

Volume Title

Publisher

Amer Physical Soc.

Open Access Color

Green Open Access

Yes

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Abstract

The left-right chiral and ferromagnetic-antiferromagnetic double-spin-glass clock model with the crucially even number of states q = 4 and in three dimensions d = 3 has been studied by renormalization-group theory. We find for the first time to our knowledge four spin-glass phases including conventional chiral and quadrupolar spin-glass phases and phase transitions between spin-glass phases. The chaoses in the different spin-glass phases and in the phase transitions of the spin-glass phases with the other spin-glass phases with the non-spin-glass ordered phases and with the disordered phase are determined and quantified by Lyapunov exponents. It is seen that the chiral spin-glass phase is the most chaotic spin-glass phase. The calculated phase diagram is also otherwise very rich including regular and temperature-inverted devil's staircases and reentrances.

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Keywords

N/A, Statistical Mechanics (cond-mat.stat-mech), FOS: Physical sciences, Disordered Systems and Neural Networks (cond-mat.dis-nn), Condensed Matter - Disordered Systems and Neural Networks, Condensed Matter - Statistical Mechanics

Fields of Science

0103 physical sciences, 01 natural sciences

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OpenCitations Citation Count
12

Source

Physical Review E

Volume

96

Issue

3

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End Page

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CrossRef : 2

Scopus : 12

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Mendeley Readers : 12

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