Numerical evidence of the double-Griffiths phase of the random quantum Ashkin-Teller chain
The random quantum Ashkin-Teller chain is studied numerically by means of time-dependent Density-Matrix Renormalization Group. The critical lines are estimated as the location of the peaks of the integrated autocorrelation times, computed from spin-spin and polarization-polarization autocorrelation...
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Veröffentlicht in: | The European physical journal. B, Condensed matter physics Condensed matter physics, 2016, Vol.89 (1), p.1-12, Article 18 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The random quantum Ashkin-Teller chain is studied numerically by means of time-dependent Density-Matrix Renormalization Group. The critical lines are estimated as the location of the peaks of the integrated autocorrelation times, computed from spin-spin and polarization-polarization autocorrelation functions. Disorder fluctuations of magnetization and polarization are observed to be maximum on these critical lines. Entanglement entropy leads to the same phase diagram, though with larger finite-size effects. The decay of spin-spin and polarization-polarization autocorrelation functions provides numerical evidence of the existence of a double Griffiths phase when taking into account finite-size effects. The two associated dynamical exponents
z
increase rapidly as the critical lines are approached, in agreement with the recent conjecture of a divergence at the two transitions in the thermodynamic limit. |
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ISSN: | 1434-6028 1434-6036 |
DOI: | 10.1140/epjb/e2015-60593-3 |