Exponential dependence of the vortex pinning potential on current density in high-Tc superconductors -: art. no. 064522

被引:9
|
作者
Yan, H [1 ]
Abdelhadi, MM
Jung, JA
Willemsen, BA
Kihlstrom, KE
机构
[1] Univ Alberta, Dept Phys, Edmonton, AB T6G 2J1, Canada
[2] Superconductor Technol Inc, Santa Barbara, CA 93111 USA
关键词
D O I
10.1103/PhysRevB.72.064522
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
We investigated the dependence of the vortex pinning potential on current density U-eff(J) in Tl2Ba2CaCu2Oy, Tl2Ba2Ca2Cu3Oy, and YBa2Cu3Oy thin films and single crystals, measured by us and other research groups. In all these cases U-eff(J) was calculated from the magnetic relaxation data using Maley's procedure [Phys. Rev. B 42, 2639 (1990)]. We explored the exponential dependence of U-eff(J), first introduced by Thompson [Phys. Rev. B 44, 456 (1991).] to explain long-term nonlogarithmic magnetic relaxations in high-temperature superconductors (HTSC), as an alternative to power-law and logarithmic forms of U-eff(J). The results revealed that for J larger than approximately 0.4J(c), the energy barrier can be expressed in the following form: U-eff(J)=aI(co)(1-T/T-*)(3/2) exp(-bJ/J(co)), where the constant b is the same for all samples investigated. This result is independent of the anisotropy (the interplanar coupling). The experimental results were analyzed taking into account the spatial dependence of the pinning potential, proposed by Qin [J. Appl. Phys. 77, 2618 (1995)]. We suggested that the exponential form of U-eff(J) could represent vortex pinning and motion in the a-b planes due to a nanoscopic variation of the order parameter, in agreement with the growing experimental evidence for the presence of nanostructures, stripes (filaments) in HTSC.
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页数:12
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