Vortex state in a d-wave superconductor

被引:108
|
作者
Franz, M
Kallin, C
Soininen, PI
Berlinsky, AJ
Fetter, AL
机构
[1] MCMASTER UNIV, BROCKHOUSE INST MAT RES, HAMILTON, ON L8S 4M1, CANADA
[2] STANFORD UNIV, DEPT PHYS, STANFORD, CA 94305 USA
关键词
D O I
10.1103/PhysRevB.53.5795
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
We discuss the physics of the vortex state in a d-wave superconductor, using the phenomenological Ginzburg-Landau theory, where many unusual phenomena arise from the small admixture of the s-wave component induced by spatial variations in the dominant d wave. Properties of an isolated vortex and of the Abrikosov vortex lattice are studied by means of analytic and numerical methods. An isolated vortex has a considerable structure, with four ''extra'' nodes in the s-wave order parameter symmerically placed around the core and an amplitude forming a four-lobe profile decaying as 1/r(2) at large distances. The supercurrent and magnetic-field distributions are also calculated. The Abrikosov lattice is in general oblique with the precise shape determined by the magnetic field and s-d mixing parameter epsilon(upsilon). The magnetic-field distribution in the Abrikosov state has two nonequivalent saddle points resulting in the prediction of a double peak line shape in mu SR and NMR experiments as a test of a d-wave symmetry. Detailed comparison is made with existing experimental data and experiments are proposed to test for the predicted effects.
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页码:5795 / 5814
页数:20
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