Microscopic evidence for anisotropic multigap superconductivity in the CsV3Sb5 kagome superconductor
Abstract
The recently discovered kagome superconductor CsV3Sb5 (T-c similar or equal to 2.5 K) has been found to host charge order as well as a non-trivial band topology, encompassing multiple Dirac points and probable surface states. Such a complex and phenomenologically rich system is, therefore, an ideal playground for observing unusual electronic phases. Here, we report anisotropic superconducting properties of CsV3Sb5 by means of transverse-field muon spin rotation (mu SR) experiments. The fits of temperature dependences of in-plane and out-of-plane components of the magnetic penetration depth suggest that the superconducting order parameter may have a two-gap (s + s)-wave symmetry. The multiband nature of superconductivity could be further supported by the different temperature dependences of the anisotropic magnetic penetration depth gamma lambda(T) and upper critical field Y-Bc2(T). The relaxation rates obtained from zero field mu SR experiments do not show noticeable change across the superconducting transition, indicating that superconductivity does not break time reversal symmetry. Show more
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https://doi.org/10.3929/ethz-b-000544278Publication status
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Journal / series
npj Quantum MaterialsVolume
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Publisher
NatureMore
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