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Computer simulations of two-dimensional melting with dipole-dipole interactions

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arxiv 0806.3528 v1 pith:KEWSXMVU submitted 2008-06-21 cond-mat.soft physics.class-phphysics.comp-ph

Computer simulations of two-dimensional melting with dipole-dipole interactions

classification cond-mat.soft physics.class-phphysics.comp-ph
keywords bondorientationalsimulationstemperaturecarlocorrelationdipole-dipoledynamic
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We perform molecular dynamics and Monte Carlo simulations of two-dimensional melting with dipole-dipole interactions. Both static and dynamic behaviors are examined. In the isotropic liquid phase, the bond orientational correlation length 6 and susceptibility 6 are measured, and the data are fitted to the theoretical ansatz. An algebraic decay is detected for both spatial and temporal bond orientational correlation functions in an intermediate temperature regime, and it provides an explicit evidence for the existence of the hexatic phase. From the finite-size scaling analysis of the global bond orientational order parameter, the disclination unbinding temperature Ti is estimated. In addition, from dynamic Monte Carlo simulations of the positional order parameter, we extract the critical exponents at the dislocation unbinding temperature Tm. All the results are in agreement with those from experiments and support the Kosterlitz-Thouless-Halperin-Nelson-Young (KTHNY) theory.

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