Two-band BCS mechanism of superconductivity in a Ba(Fe0.9Co0.1)2As2 high-temperature superconductor

被引:0
|
作者
E. G. Maksimov
A. E. Karakozov
A. A. Voronkov
B. P. Gorshunov
S. S. Zhukov
E. S. Zhukova
V. S. Nozdrin
S. Haindl
B. Holzapfel
L. Schultz
D. Wu
M. Dressel
K. Iida
P. Kallina
F. Kurth
机构
[1] Russian Academy of Sciences,Lebedev Physical Institute
[2] Russian Academy of Sciences,Vereshchagin Institute of High
[3] Russian Academy of Sciences,Pressure Physics
[4] Moscow Institute of Physics and Technology (State University),Prokhorov General Physics Institute
[5] Volgograd State Technical University,Institut für Metallishce Werkstoffe
[6] Leibniz-Institut für Festkörper- und Werkstoffforschung Dresden,1. Physikalisches Institut
[7] Universität Stuttgart,undefined
来源
JETP Letters | 2011年 / 93卷
关键词
JETP Letter; Spectral Weight; Super Conducting; BaFe; Hole Band;
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中图分类号
学科分类号
摘要
Terahertz and infrared spectra of the conductivity, σ(ν), and dielectric constant, ɛ(ν), of a Ba(Fe0.9Co0.1)2As2 film (Tc = 20 K) have been analyzed together with previous specific-heat and angular resolved photoelectron spectroscopy data. It has been shown that the spectra σ(ν) and ɛ(ν) of Ba(Fe0.9Co0.1)2As2 in the superconducting phase at T = 5 K, as well as the magnetic field penetration depth, can be described well using the standard Bardeen-Cooper-Schrieffer (BCS) model with an additive contribution of electron and hole bands. It has been found that the measured temperature dependence of the magnetic field penetration depth in a wide temperature range 5 K < T < Tc can be described only with the introduction of interband pairing interaction. The coupling constant of electron and hole bands, λ1, 2 = 0.1, as well as the temperature dependences of superconducting gaps in the electron and hole subsystems, has been determined using the model of two-band superconductivity developed earlier for MgB2.
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页码:736 / 742
页数:6
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