Mechanism of vortex motion in high-temperature superconductors

被引:35
|
作者
Wördenweber, R [1 ]
机构
[1] Forschungszentrum Julich, Inst Schicht & Ionentech, D-52425 Julich, Germany
关键词
D O I
10.1088/0034-4885/62/2/003
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
Different models for the description of vortex motion in real type-II superconducting systems are introduced and applied to high- and low-T-c superconductors, ranging from pin breaking in homogeneous systems to different vortex shear models, which describe the plastic flow of vortices within percolation paths across the superconductor taking into account a distribution of superconducting properties. It is demonstrated, that collective pinning (for instance caused by oxygen vacancies) is sufficiently strong to provide the necessary intrinsic volume pinning force in high-T-c material ifa single vortex approach is applied. Thus, inhomogeneities in the sample have to be considered, which lead to a flux shear dominated mechanism of vortex motion in real systems. This mechanism automatically explains a number of interesting phenomena and properties of high-T-c material: the Arrhenius-like phase transition, the 's'-shape of the voltage-current characteristics in the double logarithmic plot, the existence of a reversible regime close to B-c2, and the correct temperature scaling, field scaling and magnitude of the volume pinning force. Finally, the inhomogeneity of the superconducting material is derived from experimental data via inversion schemes obtained for different models. The resulting distribution functions for local superconducting properties are comparable for all schemes. Possible explanations for the shape of the distributions are given.
引用
收藏
页码:187 / 236
页数:50
相关论文
共 50 条
  • [21] Singular and nonsingular vortex structures in high-temperature superconductors
    Bystrov, AS
    Mel'nikov, AS
    Ryzhov, DA
    Nefedov, IM
    Shereshevskii, IA
    Vysheslavtsev, PP
    MODERN PHYSICS LETTERS B, 2003, 17 (10-12): : 621 - 626
  • [22] DISSIPATIVE FLUX MOTION IN HIGH-TEMPERATURE SUPERCONDUCTORS
    PALSTRA, TTM
    BATLOGG, B
    VANDOVER, RB
    SCHNEEMEYER, LF
    WASZCZAK, JV
    PHYSICAL REVIEW B, 1990, 41 (10): : 6621 - 6632
  • [23] Electrodynamics of the Josephson vortex lattice in high-temperature superconductors
    Koshelev, A. E.
    PHYSICAL REVIEW B, 2007, 76 (05)
  • [24] RESISTIVITY OF HIGH-TEMPERATURE SUPERCONDUCTORS - IS THE VORTEX STATE A LIQUID
    CHAKRAVARTY, S
    IVLEV, BI
    OVCHINNIKOV, YN
    PHYSICAL REVIEW LETTERS, 1990, 64 (26) : 3187 - 3190
  • [25] Possible vortex splitting in high-temperature cuprate superconductors
    Hlubina, Richard
    PHYSICAL REVIEW B, 2008, 77 (09):
  • [26] CRITICAL CURRENTS AND VORTEX UNBINDING IN HIGH-TEMPERATURE SUPERCONDUCTORS
    MINNHAGEN, P
    JENSEN, HJ
    FRELTOFT, T
    SUPERCONDUCTOR SCIENCE & TECHNOLOGY, 1992, 5 : S444 - S447
  • [27] FREEZING TRANSITION OF VORTEX LIQUID IN HIGH-TEMPERATURE SUPERCONDUCTORS
    JACKSON, DJC
    DAS, MP
    PHYSICA C-SUPERCONDUCTIVITY AND ITS APPLICATIONS, 1994, 235 : 2635 - 2636
  • [28] Investigation on the bisoliton mechanism of high-temperature superconductors
    Zhang, LY
    Li, BZ
    Lin, JT
    Pu, FC
    PHYSICA STATUS SOLIDI B-BASIC RESEARCH, 1996, 194 (02): : 683 - 689
  • [29] Possible superconductivity mechanism in high-temperature superconductors
    I. I. Amelin
    Journal of Experimental and Theoretical Physics Letters, 2003, 77 : 132 - 134
  • [30] Possible superconductivity mechanism in high-temperature superconductors
    Amelin, II
    JETP LETTERS, 2003, 77 (03) : 132 - 134