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Quasiparticle Hall Transport of d-wave Superconductors in Vortex State

Superconductivity 2007-05-23 v2

Abstract

We present a theory of quasiparticle Hall transport in strongly type-II superconductors within their vortex state. We establish the existence of integer quantum spin Hall effect in clean unconventional dx2y2d_{x^2-y^2} superconductors in the vortex state from a general analysis of the Bogoliubov-de Gennes equation. The spin Hall conductivity σxys\sigma^s_{xy} is shown to be quantized in units of 8π\frac{\hbar}{8\pi}. This result does not rest on linearization of the BdG equations around Dirac nodes and therefore includes inter-nodal physics in its entirety. In addition, this result holds for a generic inversion-symmetric lattice of vortices as long as the magnetic field BB satisfies Hc1BHc2H_{c1} \ll B \ll H_{c2}. We then derive the Wiedemann-Franz law for the spin and thermal Hall conductivity in the vortex state. In the limit of T0T \to 0, the thermal Hall conductivity satisfies κxy=4π23(kB)2Tσxys\kappa_{x y}=\frac{4\pi^2}{3}(\frac{k_B}{\hbar})^2 T \sigma^s_{xy}. The transitions between different quantized values of σxys\sigma^s_{xy} as well as relation to conventional superconductors are discussed.

Keywords

Cite

@article{arxiv.cond-mat/0104516,
  title  = {Quasiparticle Hall Transport of d-wave Superconductors in Vortex State},
  author = {O. Vafek and A. Melikyan and Z. Tesanovic},
  journal= {arXiv preprint arXiv:cond-mat/0104516},
  year   = {2007}
}

Comments

18 pages REVTex, 3 figures, references added