Ground State Entropy of Potts Antiferromagnets and the Approach to the 2D Thermodynamic Limit
arXiv:cond-mat/9808057 · doi:10.1103/PhysRevE.58.4332
Abstract
We study the ground state degeneracy per site (exponent of the ground state entropy) for the -state Potts antiferromagnet on infinitely long strips with width of 2D lattices with free and periodic boundary conditions in the direction, denoted FBC and PBC. We show that the approach of to its 2D thermodynamic limit as increases is quite rapid; for moderate values of and , is within about 5 % and of the 2D value for FBC and PBC, respectively. The approach of to the 2D thermodynamic limit is proved to be monotonic (non-monotonic) for FBC (PBC). It is noted that ground state entropy determinations on infinite strips can be used to obtain the central charge for cases with critical ground states.
21 pages, Latex, 1 figures; some misprints in Table 1 corrected
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- Structural Properties of Potts Model Partition Functions and Chromatic Polynomials for Lattice Strips
- T=0 Partition Functions for Potts Antiferromagnets on Moebius Strips and Effects of Graph Topology
- Ground State Entropy of Potts Antiferromagnets: Cases with Noncompact W Boundaries Having Multiple Points at 1/q = 0
- Ground-State Degeneracy of Potts Antiferromagnets on Two-Dimensional Lattices: Approach Using Infinite Cyclic Strip Graphs
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- Transfer Matrices and Partition-Function Zeros for Antiferromagnetic Potts Models III. Triangular-Lattice Chromatic Polynomial
- Exact Potts Model Partition Functions on Strips of the Honeycomb Lattice
- Ground State Entropy of the Potts Antiferromagnet on Cyclic Strip Graphs
- Ground State Entropy of Potts Antiferromagnets on Cyclic Polygon Chain Graphs
- Density of states, Potts zeros, and Fisher zeros of the Q-state Potts model for continuous Q
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- Ground State Entropy of the Potts Antiferromagnet with Next-Nearest-Neighbor Spin-Spin Couplings on Strips of the Square Lattice
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- Ground State Entropy of the Potts Antiferromagnet on Triangular Lattice Strips
- Exact T=0 Partition Functions for Potts Antiferromagnets on Sections of the Simple Cubic Lattice
- Field-induced Ordering in Critical Antiferromagnets
- General Structural Results for Potts Model Partition Functions on Lattice Strips
- Monte Carlo study of the antiferromagnetic three-state Potts model with staggered polarization field on the square lattice
- Chromatic Polynomials for Lattice Strips with Cyclic Boundary Conditions
- Transfer Matrices for the Zero-Temperature Potts Antiferromagnet on Cyclic and Mobius Lattice Strips
- Exact Chromatic Polynomials for Toroidal Chains of Complete Graphs
- From hard spheres to hard-core spins
- Lower Bounds on the Ground State Entropy of the Potts Antiferromagnet on Slabs of the Simple Cubic Lattice