Superconducting Gap Structure of Filled Skutterudite LaOs4As12 Compound through μSR Investigations

Author:

Bhattacharyya Amitava1ORCID,Adroja Devashibhai T.23ORCID,Hillier Adrian D.2ORCID,Biswas Pabitra Kumar2

Affiliation:

1. Department of Physics, Ramakrishna Mission Vivekananda Educational and Research Institute, Belur Math, Howrah 711202, India

2. ISIS Facility, Rutherford Appleton Laboratory, Chilton, Didcot Oxon, Oxfordshire OX11 0QX, UK

3. Highly Correlated Matter Research Group, Physics Department, University of Johannesburg, P.O. Box 524, Auckland Park 2006, South Africa

Abstract

Filled skutterudite compounds have gained attention recently as an innovative platforms for studying intriguing low-temperature superconducting properties. Regarding the symmetry of the superconducting gap, contradicting findings from several experiments have been made for LaRu4As12 and its isoelectronic counterpart, LaOs4As12. In this vein, we report comprehensive bulk and microscopic results on LaOs4As12 utilizing specific heat analysis and muon-spin rotation/relaxation (μSR) measurements. Bulk superconductivity with TC = 3.2 K was confirmed by heat capacity. The superconducting ground state of the filled-skutterudite LaOs4As12 compound is found to have two key characteristics: superfluid density exhibits saturation type behavior at low temperature, which points to a fully gapped superconductivity with gap value of 2Δ/kBTC = 3.26; additionally, the superconducting state does not show any sign of spontaneous magnetic field, supporting the preservation of time-reversal symmetry. These results open the door for the development of La-based skutterudites as special probes for examining the interplay of single- and multiband superconductivity in classical electron–phonon systems.

Funder

Science & Engineering Research Board

UGC-DAE CSR

Royal Society of London and EPSRC-UK

Publisher

MDPI AG

Subject

Materials Chemistry,Chemistry (miscellaneous),Electronic, Optical and Magnetic Materials

Reference44 articles.

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5. Evidence for Unconventional Strong-Coupling Superconductivity in PrOs4Sb12: An Sb Nuclear Quadrupole Resonance Study;Kotegawa;Phys. Rev. Lett.,2003

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