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Short-range berezinskii-kosterlitz-thouless phase characterization for the q-state clock model

  • Oscar A. Negrete
  • , Patricio Vargas
  • , Francisco J. Peña
  • , Gonzalo Saravia
  • , Eugenio E. Vogel
  • Universidad Técnico Federico Santa María
  • CEDENNA
  • Universidad de la Frontera

Producción científica: Contribución a una revistaArtículorevisión exhaustiva

5 Citas (Scopus)

Resumen

Beyond the usual ferromagnetic and paramagnetic phases present in spin systems, the usual q-state clock model presents an intermediate vortex state when the number of possible orientations q for the system is greater than or equal to 5. Such vortex states give rise to the Berezinskii-KosterlitzThouless (BKT) phase present up to the XY model in the limit q → ∞. Based on information theory, we present here an analysis of the classical order parameters plus new short-range parameters defined here. Thus, we show that even using the first nearest neighbors spin-spin correlations only, it is possible to distinguish the two transitions presented by this system for q greater than or equal to 5. Moreover, the appearance at relatively low temperature and disappearance of the BKT phase at a rather fix higher temperature is univocally determined by the short-range interactions recognized by the information content of classical and new parameters.

Idioma originalInglés
Número de artículo1019
PublicaciónEntropy
Volumen23
N.º8
DOI
EstadoPublicada - ago. 2021
Publicado de forma externa

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