Thermal conductivity of GeTe/SbTe superlattices measured by coherent phonon spectroscopy
arXiv:1106.4101 · doi:10.1063/1.3611030
Abstract
We report on evaluation of lattice thermal conductivity of GeTe/SbTe superlattice (SL) by using femtosecond coherent phonon spectroscopy at various lattice temperatures. The time-resolved transient reflectivity obtained in amorphous and crystalline GeTe/SbTe SL films exhibits the coherent optical modes at terahertz (THz) frequencies with picoseconds dephasing time. Based on the Debye theory, we calculate the lattice thermal conductivity, including scattering by grain boundary and point defect, umklapp process, and phonon resonant scattering. The results indicate that the thermal conductivity in amorphous SL is less temperature dependent, being attributed to dominant phonon-defect scattering.
4 pages, 2 figures, submitted to Applied Physics Letters