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Dominant s-wave superconducting gap in PdTe₂ observed by tunneling spectroscopy on side-junctions

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arxiv 1901.04227 v2 pith:5XFU3DBD submitted 2019-01-14 cond-mat.supr-con

Dominant s-wave superconducting gap in PdTe₂ observed by tunneling spectroscopy on side-junctions

classification cond-mat.supr-con
keywords pdtewavebarrierconventionaljunctionsside-junctionssuperconductivitytransparencies
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We have fabricated superconductor-normal metal side-junctions with different barrier transparencies out of PdTe$_2$ crystalline flakes and measured the differential conductance spectra. Modeling our measurements using a modified Blonder Tinkham Klapwijk (BTK) formalism confirms that the superconductivity is mostly comprised of the conventional $s$-wave symmetry. We have found that for junctions with very low barrier transparencies, the junctions can enter a thermal regime, where the critical current becomes important. Adding this to the BTK-model allows us to accurately fit the experimental data, from which we conclude that the superconductivity in the $a$-$b$ plane of PdTe$_2$ is dominated by conventional $s$-wave pairing.

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