arXiv · 2102.07685
Thermal dynamics and electronic temperature waves in layered correlated materials
Abstract
We explore layered strongly correlated materials as a platform to identify and control unconventional heat transfer phenomena. We demonstrate that these systems can be tailored to sustain a wide spectrum of heat transport regimes, ranging from ballistic, to hydrodynamic all the way to diffusive. Within the hydrodynamic regime, wave-like temperature oscillations are predicted up to room temperature. All the above phenomena have a purely electronic origin, stemming from the existence of two components in the electronic system, each one thermalized at different temperatures. The interaction strength can be exploited as a knob to control the different thermal transport regimes. The present results pave the way to transition-metal oxide heterostructures as building blocks for nanodevices exploiting the wave-like nature of heat transfer on the picosecond time scale.
Explore related subjects
Keep this discovery
Giacomo Mazza, Marco Gandolfi, Massimo Capone, Francesco Banfi, Claudio Giannetti. 2021-02-15. Thermal dynamics and electronic temperature waves in layered correlated materials. https://doi.org/10.1038/s41467-021-27081-2
Cite the original work for its findings. Save a collection to share your selection of sources.