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Resonances in the Field-Angle-Resolved Thermal Conductivity of CeCoIn_{5}.

Authors :
Kim DY
Lin SZ
Weickert F
Bauer ED
Ronning F
Thompson JD
Movshovich R
Source :
Physical review letters [Phys Rev Lett] 2017 May 12; Vol. 118 (19), pp. 197001. Date of Electronic Publication: 2017 May 12.
Publication Year :
2017

Abstract

The thermal conductivity measurement in a rotating magnetic field is a powerful probe of the structure of the superconducting energy gap. We present high-precision measurements of the low-temperature thermal conductivity in the unconventional heavy-fermion superconductor CeCoIn_{5}, with the heat current J along the nodal [110] direction of its d_{x^{2}-y^{2}} order parameter and the magnetic field up to 7 T rotating in the ab plane. In contrast to the smooth oscillations found previously for J∥[100], we observe a sharp resonancelike peak in the thermal conductivity when the magnetic field is also in the [110] direction, parallel to the heat current. We explain this peak qualitatively via a model of the heat transport in a d-wave superconductor. In addition, we observe two smaller but also very sharp peaks in the thermal conductivity for the field directions at angles Θ≈±33° with respect to J. The origin of the observed resonances at Θ≈±33° at present defies theoretical explanation. The challenge of uncovering their source will dictate exploring theoretically more complex models, which might include, e.g., fine details of the Fermi surface, Andreev bound vortex core states, a secondary superconducting order parameter, and the existence of gaps in spin and charge excitations.

Details

Language :
English
ISSN :
1079-7114
Volume :
118
Issue :
19
Database :
MEDLINE
Journal :
Physical review letters
Publication Type :
Academic Journal
Accession number :
28548529
Full Text :
https://doi.org/10.1103/PhysRevLett.118.197001