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Finite-size scaling analysis of the anisotropic critical behavior of the two-dimensional Ising model under shear

by: D. Winter, P. Virnau, J. Horbach, K. Binder
EPL (Europhysics Letters) (12 October 2010), 60002, doi:10.1209/0295-5075/91/60002  Key: citeulike:11898298

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Abstract

The critical behavior of the two-dimensional Ising Model with non-conserved order parameter in steady-state shear is studied by large-scale Monte Carlo simulations. Studying the structure factor S ( q x , q y ) in the disordered phase, the ratio of correlation length exponents ν x /ν y in the two lattice directions ( x , y ) is estimated, and the critical temperature is determined as a function of the shear rate as T c ( ) − T c (0) with ≈0.45. Critical exponents β≈0.37, γ≈1.1, ; ν ⊥ ≈0.46, ν ∥ ≈1.38 are roughly compatible with anisotropic hyperscaling.


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