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首页> 外文期刊>Journal of Physics. Condensed Matter >The melting transition of a vortex lattice in the uniformly frustrated XY model with quasi-one-dimensional and quasi-two-dimensional coupling anisotropy
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The melting transition of a vortex lattice in the uniformly frustrated XY model with quasi-one-dimensional and quasi-two-dimensional coupling anisotropy

机译:准一维和准二维耦合各向异性的均匀受抑XY模型中涡旋晶格的熔融转变

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The uniformly frustrated XY model on the cubic lattice with an anisotropic coupling constant is studied numerically. Quasi-one-dimensional and quasi-two-dimensional systems are examined as models for a charge density wave in a ring crystal and a layer superconductor, respectively. The melting transition of a vortex lattice is investigated by means of non-equilibrium relaxation analysis. We find scaling behaviour of the relaxation with a power law, which indicates that the phase transition is of second order, in contrast to the first-order transition in the isotropic case. The critical exponents are estimated as β = 0.28 and zν = 2.3 for the quasi-one-dimensional system and β = 0.40 and zν = 2.9 for the quasi-two-dimensional system, and α0 for both cases. This implies that the universality classes of the two are different.
机译:数值研究了具有各向异性耦合常数的立方晶格上均匀受挫的XY模型。研究了准一维和准二维系统分别作为环形晶体和层超导体中电荷密度波的模型。通过非平衡弛豫分析研究了涡旋晶格的熔融转变。我们发现,幂律的弛豫缩放行为表明相变是二阶的,与各向同性情况下的一阶跃迁相反。对于准一维系统,临界指数估计为β= 0.28和zν= 2.3,对于准二维系统,临界指数估计为β= 0.40和zν= 2.9,两种情况都为α0。这意味着两者的通用性类别是不同的。

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