International audienceThe low and weakly temperature-varying lattice thermal conductivity, κL(T), in crystals with a complex unit cell such as type-I clathrates is assumed to originate from a reduced momentum and energy space available for propagative lattice vibrations, which is caused by the occurrence of low-energy optical phonon modes. In the context of ab initio self-consistent phonon (SCP) theory, it has been shown that the cubic and quartic anharmonic interactions result in a temperature-induced energy renormalization of these low-lying optical branches which contributes to the anomalous behavior of κL(T) in structurally ordered type-I clathrates [T. Tadano and S. Tsuneyuki, Phys. Rev. Lett. 120, 105901 (2018)]. By means of inelastic...
International audienceChalcogenide semiconductors and semimetals are a fertile class of efficient th...
International audienceChalcogenide semiconductors and semimetals are a fertile class of efficient th...
Low thermal conductivity is favorable for preserving the temperature gradient between the two ends o...
International audienceThe low and weakly temperature-varying lattice thermal conductivity, κL(T), in...
International audienceThe low and weakly temperature-varying lattice thermal conductivity, κL(T), in...
International audienceThe low and weakly temperature-varying lattice thermal conductivity, κL(T), in...
The low and weakly temperature-varying lattice thermal conductivity, κL(T), in crystals with a compl...
International audienceOne of the key requirements for good thermoelectric materials is a low lattice...
International audienceOne of the key requirements for good thermoelectric materials is a low lattice...
International audienceOne of the key requirements for good thermoelectric materials is a low lattice...
International audienceOne of the key requirements for good thermoelectric materials is a low lattice...
International audienceOne of the key requirements for good thermoelectric materials is a low lattice...
International audienceChalcogenide semiconductors and semimetals are a fertile class of efficient th...
International audienceChalcogenide semiconductors and semimetals are a fertile class of efficient th...
International audienceChalcogenide semiconductors and semimetals are a fertile class of efficient th...
International audienceChalcogenide semiconductors and semimetals are a fertile class of efficient th...
International audienceChalcogenide semiconductors and semimetals are a fertile class of efficient th...
Low thermal conductivity is favorable for preserving the temperature gradient between the two ends o...
International audienceThe low and weakly temperature-varying lattice thermal conductivity, κL(T), in...
International audienceThe low and weakly temperature-varying lattice thermal conductivity, κL(T), in...
International audienceThe low and weakly temperature-varying lattice thermal conductivity, κL(T), in...
The low and weakly temperature-varying lattice thermal conductivity, κL(T), in crystals with a compl...
International audienceOne of the key requirements for good thermoelectric materials is a low lattice...
International audienceOne of the key requirements for good thermoelectric materials is a low lattice...
International audienceOne of the key requirements for good thermoelectric materials is a low lattice...
International audienceOne of the key requirements for good thermoelectric materials is a low lattice...
International audienceOne of the key requirements for good thermoelectric materials is a low lattice...
International audienceChalcogenide semiconductors and semimetals are a fertile class of efficient th...
International audienceChalcogenide semiconductors and semimetals are a fertile class of efficient th...
International audienceChalcogenide semiconductors and semimetals are a fertile class of efficient th...
International audienceChalcogenide semiconductors and semimetals are a fertile class of efficient th...
International audienceChalcogenide semiconductors and semimetals are a fertile class of efficient th...
Low thermal conductivity is favorable for preserving the temperature gradient between the two ends o...