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Dynamics of time-reversal-symmetry-breaking vortices in unconventional supercondnctors

机译:非传统超级集团中的时间逆转涡流的动态

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Based on a two-component Ginzburg-Landau theory, we find a number of interesting behaviors of vortex dynamics in the time-reversal-symmetry-breaking (T-breaking) regime of the parameter space: (i) Only one of the two types of T-breaking vortices is stable against applied currents at intermediate and high fields; (ii) For these dynamically stable vortices, the equilibrium phase transitions at the lower and/or the upper critical fields may be of first order; (iii) The free vortex flow resistivity of the T-breaking vortices is generally nonlinear, and in the case of (iii) there an resistivity discontinuities at the first-order transitions. The phase diagram of the T-breaking vortices is presented. [References: 14]
机译:基于双组分金茨堡 - Landau理论,我们在参数空间的时间反转对称(T破)制度中发现了许多有趣的涡流动力学行为:(i)只有两种类型中的一个 T型涡流稳定,对中间和高领域的施加电流稳定; (ii)对于这些动态稳定的涡流,下部和/或上部临界领域的平衡相转变可以是第一阶; (iii)T破碎涡流的自由涡流流动电阻率通常是非线性的,并且在(iii)的情况下,在一阶转变中有电阻率不连续。 提出了T破涡旋的相图。 [参考:14]

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