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Robustness of a quasiparticle interference test for sign-changing gaps in multiband superconductors

Johannes H. J. Martiny, Andreas Kreisel, P. J. Hirschfeld, Brian M. Andersen

DOI 10.1103/PhysRevB.95.184507 · Physical Review B

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Abstract

Recently, a test for a sign-changing gap function in a candidate multiband unconventional superconductor involving quasiparticle interference data was proposed. The test was based on the antisymmetric, Fourier transformed conductance integrated over a range of momenta q corresponding to interband processes, which was argued to display a particular resonant form, provided the gaps changed sign between the Fermi-surface sheets connected by q. The calculation was performed for a single impurity, raising the question of how robust this measure is as a test of sign-changing pairing in a realistic system with many impurities. Here we reproduce the results of the previous work within a model with two distinct Fermi-surface sheets, and we show explicitly that the previous result, while exact for a single nonmagnetic scatterer and also in the limit of a dense set of random impurities, can be difficult to implement for a few dilute impurities. In this case, however, appropriate isolation of a single impurity is sufficient to recover the expected result, allowing a robust statement about the gap signs to be made.

Source-reported materials — not catalogue approval

FormulaReported Tc (K)Pressure (GPa)Type
LaOFeAs

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—Pressure not reportedunknown
FeSe

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—Pressure not reportedunknown

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