The Magnetization of the 3D Ising Model
Abstract
We present highly accurate Monte Carlo results for simple cubic Ising lattices containing up to 2563 spins. These results were obtained by means of the Cluster Processor, a newly built special-purpose computer for the Wolff cluster simulation of the 3D Ising model. We find that the magnetization M(t) is perfectly described by M(t)=(a0-a1 tθ - a2 t) tβ , where t=(T c-T)/T c, in a wide temperature range 0.0005 < t < 0.26 . If there exist corrections to scaling with higher powers of t, they are very small. The magnetization exponent is determined as β=0.3269 (6). An analysis of the magnetization distribution near criticality yields a new determination of the critical point: K c=J/kB T c=0.2216544, with a standard deviation of 3· 10-7.
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