Boundary scattering in topological Kondo insulator SmB6
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
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (4)
Narayan Poudel
Idaho National Laboratory 1 , Idaho Falls, Idaho 83415,
Daniel J. Murray
Idaho National Laboratory 1 , Idaho Falls, Idaho 83415,
Jason R. Jeffries
Lawrence Livermore National Laboratory 2 , Livermore, California 94550,
Krzysztof Gofryk
Idaho National Laboratory Idaho Falls Idaho USA