Propagon boundary scattering relaxed via crystalline host on multiphase germanium telluride

Author:

Donovan Brian F.1ORCID,Warzoha Ronald J.2ORCID,Gray Taylor L.1,Getto Elizabeth2ORCID,Leff Asher3ORCID,Wilson Adam A.3ORCID,Ruppalt Laura B.4ORCID,Champlain James G.4

Affiliation:

1. Department of Physics, United States Naval Academy 1 , Annapolis, Maryland 21402, USA

2. Department of Mechanical Engineering, United States Naval Academy 2 , Annapolis, Maryland 21402, USA

3. US Army Research Laboratory 3 , Adelphi, Maryland 20783, USA

4. Electronic Materials Branch, Naval Research Laboratory 4 , Washington DC 20375, USA

Abstract

The movement of heat through amorphous solids on an atomic level remains an outstanding question. Recent studies suggest that the primary thermal carrier in amorphous materials, propagons, essentially behaves like phonons. In this work, we provide experimental evidence that shows the interaction between propagons and phonons by utilizing the phase change chalcogenide germanium telluride. A series of ultra-long time-delay time-domain thermoreflectance measurements are used to analyze the scattering of vibrational thermal carriers at the boundaries of amorphous GeTe thin films relative to scattering across a crystalline-amorphous bilayer. We find that amorphous long wavelength propagons that would otherwise scatter can instead be hosted by a crystalline underlayer and its phonon population. This experimental evidence directly demonstrates propagon–phonon interactions in a clear experimental manner.

Funder

Office of Naval Research

Publisher

AIP Publishing

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