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Chiral d-wave superconducting state in the core of a doubly quantized s-wave vortex in graphene

Annica M. Black-Schaffer

DOI 10.1103/PhysRevB.88.104506 · Physical Review B

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Abstract

We show that the intrinsic chiral (dx2−y2±idxy)-wave superconducting pairing in doped graphene is significantly strengthened in the core region of a doubly quantized s-wave superconducting vortex produced in a graphene-superconductor hybrid structure. The chiral d-wave state is induced by the proximity effect, which transfers the center-of-mass angular momentum of the s-wave vortex to the orbital angular momentum of the chiral d-wave Cooper pairs. The proximity effect is enhanced by the circular geometry of the vortex and we find a [1+(T−Tc,J)2]−1 temperature dependence for the chiral d-wave core amplitude, where Tc,J is its intrinsic bulk transition temperature. We further propose to detect the chiral d-wave state by studying the temperature dependence of the low-energy local density of states in the vortex core, which displays a sudden radial change as a function of the strength of the d-wave core state.

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