Electronic pathways may enhance collective atomic vibrations' magnetism
December 15, 2023
December 15, 2023
HOUSTON, Texas, Dec. 15 -- Rice University issued the following news release:
by Kayt Sukel
Special to Rice News
Materials with enhanced thermal conductivity are critical for the development of advanced devices to support applications in communications, clean energy and aerospace. But in order to engineer materials with this property, scientists need to understand how phonons, or quantum units of the vibration of atoms, behave in a particular substance.
by Kayt Sukel
Special to Rice News
Materials with enhanced thermal conductivity are critical for the development of advanced devices to support applications in communications, clean energy and aerospace. But in order to engineer materials with this property, scientists need to understand how phonons, or quantum units of the vibration of atoms, behave in a particular substance.