MICROSCOPIC ANALYSIS OF THE NONDISSIPATIVE FORCE ON A LINE VORTEX IN A SUPERCONDUCTOR

被引:4
作者
GAITAN, F
机构
[1] Int. Centre for Theor. Phys., Trieste
关键词
D O I
10.1088/0953-8984/7/12/002
中图分类号
O469 [凝聚态物理学];
学科分类号
070205 ;
摘要
A microscopical analysis of the non-dissipative force F-nd acting on a line vortex in a type-II superconductor at T = 0 is given. All the work presented assumes a charged BCS superconductor. We first examine the Berry phase induced in the BCS superconducting ground state by movement of the vortex and show how this phase enters into the hydrodynamic action S-hyd of the superconducting condensate. Appropriate variation of S-hyd gives F-nd and variation of the Berry phase term is seen to contribute the Magnus or lift force of classical hydrodynamics to F-nd. This analysis, based on the BCS ground state of a charged superconductor, confirms in detail the arguments of Ao and Thouless within the context of the BCS model. Our Berry phase, in the limit e --> 0, is seen to reproduce the Berry phase determined by these authors for a neutral superfluid. We also provide a second, independent, determination of F-nd through a microscopic derivation of the continuity equation for the condensate linear momentum. This equation yields the acceleration equation for the superflow and shows that the vortex acts as a sink for the condensate linear momentum. The rate at which momentum is lost to the vortex determines F-nd in this second approach and the result obtained agrees identically with the previous Berry phase calculation. The Magnus force contribution to F-nd is seen in both calculations to be a consequence of the vortex topology and motion.
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页码:L165 / L170
页数:6
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共 13 条
  • [1] Bardeen J, Stephen MJ, Phys. Rev., 140, (1965)
  • [2] Nozieres P, Vinen WF, The motion of flux lines in type II superconductors, Philosophical Magazine, 14, 130, (1966)
  • [3] Ao P, Thouless DJ, Phys. Rev. Lett., 70, 14, (1993)
  • [4] Gaitan F, Phys. Rev., (1995)
  • [5] Caroli C, deGennes PG, Matricon J, Phys. Lett., 9, (1964)
  • [6] Bardeen J, Kummel R, Jacobs AE, Tewordt L, Phys. Rev., 187, 2, (1969)
  • [7] Berry MV, Quantal Phase Factors Accompanying Adiabatic Changes, Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences, 392, 1802, (1984)
  • [8] Aharanov Y, Anandan J, Phase change during a cyclic quantum evolution, Physical Review Letters, 58, 16, (1987)
  • [9] Eckern U, Schon G, Ambegaokar V, Phys. Rev., 30, 11, (1984)
  • [10] Garg A, Nair VP, Stone M, Ann. Phys., 173, 1, (1987)