- 00-87 H.-O. Georgii, V. Zagrebnov
- Entropy-driven phase transitions in multitype lattice gas models
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Feb 24, 00
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Abstract. In multitype lattice gas models with hard-core interaction of
Widom--Rowlinson type, there is a competition between the entropy due
to the large number of types, and the positional energy and geometry
resulting from the exclusion rule and the activity of particles. We
investigate this phenomenon in four different models on the square
lattice: the multitype Widom-Rowlinson model with diamond-shaped
resp. square-shaped exclusion between unlike particles, a
Widom-Rowlinson model with additional molecular exclusion, and a
continuous-spin Widom-Rowlinson model. In each case we show that
this competition leads to a first-order phase transition at some
critical value of the activity, but the number and character of phases
depend on the geometry of the model. Our technique is based on
reflection positivity and the chessboard estimate.
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