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Microscopic studies of the normal and superconducting state of Ca3Ir4Sn13

S. Gerber, J. L. Gavilano, M. Medarde, V. Pomjakushin, C. Baines, E. Pomjakushina, K. Conder, M. Kenzelmann

DOI 10.1103/PhysRevB.88.104505 · Physical Review B

T1

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Abstract

We report on muon spin rotation (μSR) studies of the superconducting and magnetic properties of the ternary intermetallic stannide Ca3Ir4Sn13. This material has recently been the focus of intense research activity due to a proposed interplay of ferromagnetic spin fluctuations and superconductivity. In the temperature range T=1.6–200 K, we find that the zero-field muon relaxation rate is very low and does not provide evidence for spin fluctuations on the μSR time scale. The field-induced magnetization cannot be attributed to localized magnetic moments. In particular, our μSR data reveal that the anomaly observed in thermal and transport properties at T*≈38 K is not of magnetic origin. Results for the transverse-field muon relaxation rate at T=0.02–12 K suggest that superconductivity emerges out of a normal state that is not of a Fermi-liquid type. This is unusual for an electronic system lacking partially filled f-electron shells. The superconducting state is dominated by a nodeless order parameter with a London penetration depth of λL=385(1) nm and the electron-phonon pairing interaction is in the strong-coupling limit.

Source-reported materials — not catalogue approval

FormulaReported Tc (K)Pressure (GPa)Type
Ca3Ir4Sn13

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7Pressure not reportedunknown
Ca3Ir4Sn13

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6.8Pressure not reportedonset
Ca3Ir4Sn13

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6.8Pressure not reportedunknown
Sr3Ir4Sn13

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—Pressure not reportedunknown

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