arXiv · cond-mat/9904305
Magnetic field effects on the density of states of orthorhombic superconductors
Abstract
The quasiparticle density of states in a two-dimensional d-wave superconductor depends on the orientation of the in-plane external magnetic field H. This is because. in the region of the gap nodes, the Doppler shift due to the circulating supercurrents around a vortex depend on the direction of H. For a tetragonal system the induced pattern is four-fold symmetric and, at zero energy, the density of states exhibits minima along the node directions. But YBa_2C_3O_{6.95} is orthorhombic because of the chains and the pattern becomes two-fold symmetric with the position of the minima occuring when H is oriented along the Fermi velocity at a node on the Fermi surface. The effect of impurity scattering in the Born and unitary limit is discussed.
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Ewald Schachinger, Jules P. Carbotte. 1999-04-21. Magnetic field effects on the density of states of orthorhombic superconductors. https://doi.org/10.1103/physrevb.60.12400
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