PtBi2 surfaces show a uniform >10 meV superconducting gap and ubiquitous in-gap Andreev bound states, interpreted as evidence for anisotropic chiral topological superconductivity.
Kitaev, Fault-tolerant quantum computation by anyons, Ann
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Sizable superconducting gap and anisotropic chiral topological superconductivity in the Weyl semimetal PtBi$_2$
PtBi2 surfaces show a uniform >10 meV superconducting gap and ubiquitous in-gap Andreev bound states, interpreted as evidence for anisotropic chiral topological superconductivity.