Skip to main content
U.S. Department of Energy
Office of Scientific and Technical Information

Roughness exponent in two-dimensional percolation, Potts model, and clock model

Journal Article · · Physical Review E

We present a numerical study of the self-affine profiles obtained from configurations of the q-state Potts (with q=2,3, and 7) and p=10 clock models as well as from the occupation states for site percolation on the square lattice. The first and second order static phase transitions of the Potts model are located by a sharp change in the value of the roughness exponent {alpha} characterizing those profiles. The low temperature phase of the Potts model corresponds to flat ({alpha}{approx_equal}1) profiles, whereas its high temperature phase is associated with rough ({alpha}{approx_equal}0.5) ones. For the p=10 clock model, in addition to the flat (ferromagnetic) and rough (paramagnetic) profiles, an intermediate rough (0.5{lt}{alpha}{lt}1) phase{emdash}associated with a soft spin-wave one{emdash}is observed. Our results for the transition temperatures in the Potts and clock models are in agreement with the static values, showing that this approach is able to detect the phase transitions in these models directly from the spin configurations, without any reference to thermodynamical potentials, order parameters, or response functions. Finally, we show that the roughness exponent {alpha} is insensitive to geometric critical phenomena.

Sponsoring Organization:
(US)
OSTI ID:
40203433
Journal Information:
Physical Review E, Journal Name: Physical Review E Journal Issue: 6 Vol. 63; ISSN 1063-651X
Publisher:
The American Physical Society
Country of Publication:
United States
Language:
English

Similar Records

Phase transitions in the two-dimensional ferro- and antiferromagnetic potts models on a triangular lattice
Journal Article · Fri Dec 14 23:00:00 EST 2012 · Journal of Experimental and Theoretical Physics · OSTI ID:22069226

Nonequilibrium renormalization group fixed points of the quantum clock chain and the quantum Potts chain
Journal Article · Tue Jan 21 23:00:00 EST 2020 · Physical Review B · OSTI ID:1803176

Critical exponent for the density of percolating flux
Journal Article · Mon Feb 28 23:00:00 EST 1994 · Physical Review, D · OSTI ID:142735