Boundary scattering in topological Kondo insulator SmB6

N Narayan Poudel (Idaho National Laboratory 1 , Idaho Falls, Idaho 83415,) D Daniel J. Murray (Idaho National Laboratory 1 , Idaho Falls, Idaho 83415,) J Jason R. Jeffries (Lawrence Livermore National Laboratory 2 , Livermore, California 94550,) K Krzysztof Gofryk (Idaho National Laboratory Idaho Falls Idaho USA)

Abstract

We have studied the effects of phonon-boundary scattering on the thermal transport of topological Kondo insulator SmB6. The studies have been performed using the 3ω method across a temperature range 3–300 K. Our results indicate that the thermal conductivity of micro-sized SmB6 is of an order of magnitude smaller than that of a bulk single crystal. Using the Callaway model, we analyzed the low-temperature lattice thermal conductivity of the microcrystal and demonstrated that phonon scattering at the sample boundaries is a major contributor to the thermal resistance in this topological material. Furthermore, our study reveals that the temperature dependence of the lattice thermal conductivity exhibits a double-peak structure, suggesting strong phonon–phonon or phonon–defect interactions in this material, characteristic of resonant scattering. These findings will help in a better understanding of thermal transport in advanced materials and devices at the micro scale.

Article Details

Volume / Issue Vol. 126, Issue 19
Published May 12, 2025
ISSN 0003-6951
Publisher American Institute of Physics

Journal Info

Applied Physics Letters

American Institute of Physics

ISSN: 0003-6951 Physical Sciences

Authors (4)

N

Narayan Poudel

Idaho National Laboratory 1 , Idaho Falls, Idaho 83415,

D

Daniel J. Murray

Idaho National Laboratory 1 , Idaho Falls, Idaho 83415,

J

Jason R. Jeffries

Lawrence Livermore National Laboratory 2 , Livermore, California 94550,

K

Krzysztof Gofryk

Idaho National Laboratory Idaho Falls Idaho USA