- By:
- Upreti, Puspa R; Rashadfar, Delaram; Sahul, Raffi; Abernathy, Douglas L; Heremans, Joseph; Hermann, Raphael P; Manley, Michael E
- Journal Name:
- PRX Energy
- Page Number:
- 13001-13001
- Volume:
- 5
- Issue Number:
- 1
- Publication Date:
- January 15, 2026
- View DOI Listing:
- https://doi.org/10.1103/5d1z-wg4p
Abstract
The demand for high energy efficiency drives intense interest in thermal-management technology. Phonons are a major contributor to heat transfer in solids and controlling them through external stimuli is a key challenge for thermal management due to their weak interactions with applied fields. We report significant changes in phonon transport with the application of an electric field over a broad temperature range in a relaxor-based ferroelectric using neutron-scattering and -transport measurements. Phonon lifetimes increase along the applied poling field and this results in a tripling of the thermal conductivity in that direction. We also observe a suppression of nanoscale antiferroelectric fluctuations along the poling direction and argue that this increases the phonon lifetimes. Our results highlight a promising yet underexplored route to realistic solid-state heat switching from electric-field-modified nanostructures altering the phonon lifetimes in disordered functional materials.