10B–11B isotope substitution and superconductivity in ZrB12

被引:0
|
作者
N. E. Sluchanko
A. N. Azarevich
A. V. Bogach
S. Yu. Gavrilkin
V. V. Glushkov
S. V. Demishev
A. V. Dukhnenko
A. B. Lyashchenko
K. V. Mitsen
V. B. Filipov
机构
[1] Russian Academy of Sciences,Prokhorov General Physics Institute
[2] Moscow Institute of Physics and Technology (State University),Lebedev Physical Institute
[3] Russian Academy of Sciences,Frantsevich Institute for Problems of Materials Science
[4] National Academy of Sciences of Ukraine,undefined
来源
JETP Letters | 2011年 / 94卷
关键词
JETP Letter; Applied Magnetic Field; Critical Field; Structural Phase Transition; Boron Isotope;
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学科分类号
摘要
The specific heat of the ZrB12 compound in the normal and superconducting states (TC ≈ 6 K) has been studied in the 1.9–7 K temperature range for high-quality single crystals with different relative contents of boron isotopes. For Zr10B12, ZrnatB12, and Zr11B12 dodecaborides, the electron density of states and the electronphonon coupling constant, λe-ph ∼ 0.4, are found. The dependence of the thermodynamic and upper critical fields, as well as of the Ginzburg-Landau parameter (κ = 0.8–1.14) on temperature and isotope composition is determined. The results suggest the existence of the magnetic field induced phase transition at T* = 4–5 K, which is not related to the transition from type-I to type-II superconductivity. The possibilities of the existence of two-gap superconductivity and a structural phase transition at T* in zirconium dodecaboride are discussed.
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页码:642 / 646
页数:4
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