Ginzburg Landau theory for d-wave pairing and fourfold symmetric vortex core structure
Naoki Enomoto, Masanori Ichioka, Kazushige Machida
Abstract
The Ginzburg Landau theory for dx2-y2-wave superconductors is constructed, by starting from the Gor'kov equation with including correction terms up to the next order of ln(Tc/T). Some of the non-local correction terms are found to break the cylindrical symmetry and lead to the fourfold symmetric core structure, reflecting the internal degree of freedom in the pair potential. Using this extended Ginzburg Landau theory, we investigate the fourfold symmetric structure of the pair potential, current and magnetic field around an isolated single vortex, and clarify concretely how the vortex core structure deviates from the cylindrical symmetry in the dx2-y2-wave superconductors.
Create a lesson
Related papers
Density of States and NMR Relaxation Rate in Anisotropic Superconductivity with Intersecting Line Nodes
Yasumasa Hasegawa
Critical State Flux Penetration and Linear Microwave Vortex Response in YBa2Cu3O7-x Films
Balam A. Willemsen, J. S. Derov, S. Sridhar
Nonlinear Response of HTSC Thin Film Microwave Resonators in an Applied DC Magnetic Field
Durga P. Choudhury, Balam A. Willemsen, John S. Derov et al.
On the origin of the irreversibility line in thin YBaCuO7 films with and without columnar defects
R. Prozorov, M. Konczykowski, B. Schmidt et al.
The Fluctuation Induced Pseudogap in the Infrared Optical Conductivity of High Temperature Superconductors
Francesca Federici, Andrei A. Varlamov
Evidence for Quasiparticle Decay in Photoemission from Underdoped Cuprates
R. B. Laughlin