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Covariant gaussian approximation in Ginzburg-Landau model

机译:Ginzburg-Landau模型的协助高斯近似

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Condensed matter systems undergoing second order transition away from the critical fluctuation region are usually described sufficiently well by the mean field approximation. The critical fluctuation region, determined by the Ginzburg criterion, vertical bar T/T-c, 1 vertical bar Gi, is narrow even in high T, superconductors and has universal features well captured by the renormalization group method. However recent experiments on magnetization, conductivity and Nernst effect suggest that fluctuations effects are large in a wider region both above and below T-c. In particular some "pseudogap" phenomena and strong renormalization of the mean field critical temperature T-mf can be interpreted as strong fluctuations effects that are nonperturbative (cannot be accounted for by "gaussian fluctuations"). The physics in a broader region therefore requires more accurate approach. Self consistent methods are generally "non-conserving" in the sense that the Ward identities are not obeyed. This is especially detrimental in the symmetry broken phase where, for example, Goldstone bosons become massive. Covariant gaussian approximation remedies these problems. The Green's functions obey all the Ward identities and describe the fluctuations much better. The results for the order parameter correlator and magnetic penetration depth of the Ginzburg-Landau model of superconductivity are compared with both Monte Carlo simulations and experiments in high T-c, cuprates. (C) 2017 Elsevier Inc. All rights reserved.
机译:通过平均场近似通常良好地描述经过临界波动区域的第二阶转变的冷凝物系。由Ginzburg标准确定的临界波动区域,垂直条T / T-C,垂直条 GI,即使在高T,超导体中也具有窄,并且具有由重新运算组方法捕获的通用特征。然而,最近关于磁化,电导率和NERNST效果的实验表明,在高于和低于T-C的更广泛的区域中波动效应大。特别地,一些“假焦点”现象和平均临界温度的强烈重整化T-MF可以被解释为不受干扰的强烈波动效应(不能被“高斯波动”)。因此,更广泛区域的物理需要更准确的方法。自我一致的方法通常是“非节约”,因为病房身份没有遵守。这在对称破碎阶段特别有害,例如金石玻色子变得巨大。协调性高斯近似补救这些问题。绿色的功能遵守所有病房的身份,并描述了更好的波动。与高T-C的蒙特卡罗模拟和实验相比,吉他堡型超导型超导地区吉尔格堡 - Landau模型的顺序参数相关器和磁穿透深度。 (c)2017年Elsevier Inc.保留所有权利。

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