Cluster percolation and pseudocritical behaviour in spin models
Fortunato S, Satz H (2001)
PHYSICS LETTERS B 509(1-2): 189-195.
Zeitschriftenaufsatz
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Autor*in
Fortunato, S;
Satz, HelmutUniBi
Einrichtung
Abstract / Bemerkung
The critical behaviour of many spin models can be equivalently formulated as percolation of specific site-bond clusters. In the presence of an external magnetic field, such clusters remain well-defined and lead to a percolation transition, even though the system no longer shows thermal critical behaviour. We investigate the 2-dimensional Ising model and the 3-dimensional O(2) model by means of Monte Carlo simulations. We find for small fields that the line of percolation critical points has the same functional form as the line of thermal pseudocritical points. (C) 2001 Published by Elsevier Science B.V.
Erscheinungsjahr
2001
Zeitschriftentitel
PHYSICS LETTERS B
Band
509
Ausgabe
1-2
Seite(n)
189-195
ISSN
0370-2693
Page URI
https://pub.uni-bielefeld.de/record/1616899
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Fortunato S, Satz H. Cluster percolation and pseudocritical behaviour in spin models. PHYSICS LETTERS B. 2001;509(1-2):189-195.
Fortunato, S., & Satz, H. (2001). Cluster percolation and pseudocritical behaviour in spin models. PHYSICS LETTERS B, 509(1-2), 189-195. https://doi.org/10.1016/S0370-2693(01)00551-2
Fortunato, S, and Satz, Helmut. 2001. “Cluster percolation and pseudocritical behaviour in spin models”. PHYSICS LETTERS B 509 (1-2): 189-195.
Fortunato, S., and Satz, H. (2001). Cluster percolation and pseudocritical behaviour in spin models. PHYSICS LETTERS B 509, 189-195.
Fortunato, S., & Satz, H., 2001. Cluster percolation and pseudocritical behaviour in spin models. PHYSICS LETTERS B, 509(1-2), p 189-195.
S. Fortunato and H. Satz, “Cluster percolation and pseudocritical behaviour in spin models”, PHYSICS LETTERS B, vol. 509, 2001, pp. 189-195.
Fortunato, S., Satz, H.: Cluster percolation and pseudocritical behaviour in spin models. PHYSICS LETTERS B. 509, 189-195 (2001).
Fortunato, S, and Satz, Helmut. “Cluster percolation and pseudocritical behaviour in spin models”. PHYSICS LETTERS B 509.1-2 (2001): 189-195.
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