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Testing the $d^{*}_{x^{2}-y^{2}}$-wave pairing symmetry by quasiparticle interference in BiS$_{2}$-based superconductors

Published 28 Apr 2014 in cond-mat.supr-con | (1404.6861v1)

Abstract: The quasiparticle interference (QPI) patterns in BiS${2}$-based superconductors are theoretically investigated by taking into account the spin-orbital coupling and assuming the recently proposed $d{*}{x{2}-y{2}}$-wave pairing symmetry. We found two distinct scattering wave vectors whose evolution can be explained based on the evolution of the constant-energy contours. The QPI spectra presented in this paper can thus be compared with future scanning tunneling microscopy experiments to test whether the pairing symmetry is $d{*}_{x{2}-y{2}}$-wave in BiS$_{2}$-based superconductors.

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