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arxiv: 1205.0687 · v1 · submitted 2012-05-03 · ❄️ cond-mat.supr-con · cond-mat.mtrl-sci· cond-mat.str-el

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Zero-bias conductance peak observed in Au/FeSe0.3Te0.7 ramp-type junctions and its implication on the superconducting order parameter

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classification ❄️ cond-mat.supr-con cond-mat.mtrl-scicond-mat.str-el
keywords conductancefese0junctionsparameterbiasobservedorderpeak
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Based upon the currently predominant theory of Fe-based superconductors, the order parameter symmetry is the nodaless s\pm-wave. Andreev conductance involving normal metals and such superconductors does not have a zero bias conductance peak (ZBCP) except maybe for a very narrow range of a junction-dependent fitting parameter. We have measured differential conductance of the in-plane boundary junctions between Au and superconducting FeSe0.3Te0.7 films. The Au/FeSe0.3Te0.7 ramp-type junctions are fabricated with the bias current direction along the <110> axis of the epitaxial FeSe0.3Te0.7 film. We have always observed a pronounced ZBCP as well as some gap-like features in the conductance spectra of all samples studied, thus our experimental results suggest not the s\pm-wave theory but the possible existence of a nodal point around 45{\deg} in at least one of the gaps in FeSe0.3Te0.7 superconductor.

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