Angular dependence of the upper critical induction of clean s- and dx2-y2-wave superconductors with self-consistent ellipsoidal effective mass and Zeeman anisotropies
Abstract
We employ the Schr\"odinger-Dirac method generalized to an ellipsoidal effective mass anisotropy in order to treat the spin and orbital effective mass anisotropies self consistently, which is important when Pauli-limiting effects on the upper critical field characteristic of singlet superconductivity are present. By employing the Klemm-Clem transformations to map the equations of motion into isotropic form, we then calculate the upper critical magnetic induction Bc2(θ, φ, T) at arbitrary directions and temperatures T for isotropic s-wave and for anisotropic dx2-y2-wave superconducting order parameters. As for anisotropic s-wave superconductors, the reduced upper critical field bc2 is largest in the direction of the lowest effective mass, and is proportional to the universal orientation factor α(θ,φ). However, for dx2-y2-wave pairing, Bc2(π/2,φ,T) exhibits either a four-fold pattern with C4 symmetry just below the transition temperature Tc that rotates by π/4 as T is lowered, or a two-fold pattern with C2 symmetry, depending upon the planar effective mass anisotropy. This provides a new method to distinguish these pairing symmetries in clean unconventional superconductors.
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