Numerical Results For The 2D Random Bond 3-state Potts Model
Marco Picco

TL;DR
This paper reports numerical simulations of the 2D 3-state Potts model with random bonds, measuring critical exponents and comparing them with analytical predictions to understand phase transition behavior.
Contribution
It provides new numerical estimates of critical exponents for the disordered 2D 3-state Potts model and compares them with recent analytical results.
Findings
Measured critical exponents for magnetization and specific heat.
Found agreement or discrepancy with analytical predictions.
Enhanced understanding of phase transitions in disordered systems.
Abstract
We present results of a numerical simulation of the 3-state Potts model with random bond, in two dimension. In particular, we measure the critical exponent associated to the magnetization and the specific heat. We also compare these exponents with recent analytical computations.
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