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Superfluid density and specific heat within a self-consistent scheme for a two-band superconductor

机译:两波段超导体自洽方案内的超流体密度和比热

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The two gaps in a two-band clean s-wave superconductor are evaluated self-consistently within the quasi-classical Eilenberger weak-coupling formalism with two in-band and one interband pairing potentials. Super-fluid density, free energy, and specific heat are given in the form amenable for fitting the experimental data. Well-known two-band MgB_2 and V_3Si superconductors are used to test the developed approach. The pairing potentials obtained from the fit of the superfluid density data in MgB_2 crystal were used to calculate temperature-dependent specific heat C(T). The calculated C(T) compares well with the experimental data. Advantages and validity of this, which we call the "γ model," are discussed and compared with the commonly used empirical (and not self-consistent) "α model." Correlation between the sign of the interband coupling and the signs of the two order parameters is discussed. Suppression of the critical temperature by the interband scattering is evaluated and shown to be severe for the interband repulsion as compared to the attraction. The data on a strong T_c suppression in MgB_2 crystals by impurities suggest that the order parameters on two effective bands of this material may have opposite signs, i.e., may have the s_± structure similar to proposals for iron-based pnictide superconductors.
机译:在具有两个带内和一个带间配对电位的准经典Eilenberger弱耦合形式主义中,自洽地评估了两带清洁s波超导体中的两个间隙。以适合实验数据的形式给出了超流体密度,自由能和比热。众所周知的两波段MgB_2和V_3Si超导体用于测试开发的方法。从MgB_2晶体中超流体密度数据的拟合获得的配对电位用于计算温度相关的比热C(T)。计算出的C(T)与实验数据很好地比较。讨论了这种方法的优势和有效性,我们称之为“γ模型”,并将其与常用的经验(而非自洽)“α模型”进行了比较。讨论了带间耦合的符号与两个阶数参数的符号之间的相关性。评估了带间散射对临界温度的抑制作用,并显示与吸引力相比,带间排斥对临界温度的影响更大。关于杂质对MgB_2晶体的强T_c抑制作用的数据表明,该材料在两个有效谱带上的有序参数可能具有相反的符号,即,其s_±结构类似于铁基肽超导体的建议。

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