Thermal conductivity of doped as an example for heat transport by optical phonons in complex materials
arXiv:cond-mat/0304248 · doi:10.1140/epjb/e2004-00096-x
Abstract
We investigate the phonon thermal conductivity of doped based on out-of-plane thermal conductivity measurements. When room temperature is approached the temperature dependence of strongly deviates from the -decrease which is usually expected for heat transport by acoustic phonons. Instead, decreases much weaker or even increases with rising temperature. Simple arguments suggest that such unusual temperature dependencies of are caused by heat transport via dispersive optical phonons.
References in corpus (2)
Cited by in corpus (7)
- Heat conduction in low-dimensional quantum magnets
- High temperature charge and thermal transport properties of the n-type thermoelectric material PbSe
- Magnetic heat conductivity in : linear temperature dependence
- Heat transport of cuprate-based low-dimensional quantum magnets with strong exchange coupling
- Spin thermal conductivity of the Haldane chain compound Y2BaNiO5
- Observation of the Thermal Conductivity due to Spins in the One-Dimensional Antiferromagnetic Ising-Like Spin System ACoX3 (A = Rb, Cs; X = Cl, Br)
- Heat conductivity of the spin-Peierls compounds TiOCl and TiOBr