Robust superconductivity and the suppression of charge-density wave in the quasi-skutterudites Ca 3 ( Ir 1 x Rh x ) 4 Sn 13 single crystals at ambient pressure

Author:

Krenkel Elizabeth HORCID,Tanatar Makariy AORCID,Ghimire SunilORCID,Joshi Kamal RORCID,Chen Shuzhang,Petrovic CedomirORCID,Prozorov RuslanORCID

Abstract

Abstract Single crystals of the quasi-skutterudite compounds Ca3(Ir1-xRhx)4Sn13 (3–4–13) were synthesized by flux growth and characterized by x-ray diffraction, energy dispersive x-ray spectroscopy, magnetization, resistivity, and radio frequency magnetic susceptibility techniques. The coexistence and competition between the charge density wave (CDW) and superconductivity was studied by varying the Rh/Ir ratio. The superconducting transition temperature, T c , varies from 7 K in pure Ir (x = 0) to 8.3 K in pure Rh (x = 1). Temperature-dependent electrical resistivity reveals monotonic suppression of the CDW transition temperature, T CDW(x). The CDW starts in pure Ir, x = 0, at T CDW ≈ 40 K and extrapolates roughly linearly to zero at x c 0.53–0.58 under the superconducting dome. Magnetization and transport measurements show a significant influence of CDW on superconducting and normal states. Meissner expulsion is substantially reduced in the CDW region, indicating competition between the CDW and superconductivity. The low-temperature resistivity is higher in the CDW part of the phase diagram, consistent with the reduced density of states due to CDW gapping. Its temperature dependence just above T c shows signs of non-Fermi liquid behavior in a cone-like composition pattern. We conclude that the Ca3(Ir1-xRhx)4Sn13 alloy is a good candidate for a composition-driven quantum critical point at ambient pressure.

Funder

Division of Materials Research

Publisher

IOP Publishing

Reference47 articles.

1. A new family of ternary intermetallic superconducting/magnetic stannides;Remeika;Solid State Commun.,1980

2. Chapter 304 - Structural and physical properties of remeika phases;Gumeniuk,2018

3. Semiconducting behaviour in the remeika phase: Pr3Ir4Ge13;Kamadurai;J. Alloys Compd.,2021

4. Magnetic and transport properties of structural variants of remeika phases: Th3Ir4Ge13 and U3Ir4Ge13;Gumeniuk;Phys. Rev. B,2015

5. Thermoelectric properties of rare earth-ruthenium-germanium compounds;Kong;J. Appl. Phys.,2007

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