Thermal conductivity measurements over variable lengths on nanostructures such as nanowires provide important information about the mean free paths (MFPs) of the phonons responsible for heat conduction. However, nearly all of these measurements have been interpreted using an average MFP even though phonons in many crystals possess a broad MFP spectrum. Here, we present a reconstruction method to obtain MFP spectra of nanostructures from variable-length thermal conductivity measurements. Using this method, we investigate recently reported length-dependent thermal conductivity measurements on SiGe alloy nanowires and suspended graphene ribbons. We find that the recent measurements on graphene imply that 70% of the heat in graphene is carried ...
Heat conduction is an important energy transport process in nature. Phonon is the major energy carri...
This paper presents a critical evaluation of the approximations usually made in thermal conductivity...
With the evolution of semiconductor technology toward nanometer size and gigahertz frequency, the tr...
Thermal conductivity measurements over variable lengths on nanostructures such as nanowires provide ...
The mean free paths (MFPs) of thermal phonons are mostly unknown in many solids. Recent work indicat...
The mean free paths (MFPs) of thermal phonons are mostly unknown in many solids. Recent work indicat...
Knowledge of the mean-free-path distribution of heat-carrying phonons is key to understanding phonon...
Heat conduction in nanomaterials is an important area of study, with both fundamental and technologi...
Size effects in heat conduction, which occur when phonon mean free paths (MFPs) are comparable to ch...
International audienceWe demonstrate an experimental method to obtain information of thermal phonon ...
International audienceWe demonstrate an experimental method to obtain information of thermal phonon ...
This dissertation presents experimental studies of heat transport by phonons in crystalline material...
International audienceWe demonstrate an experimental method to obtain information of thermal phonon ...
This dissertation presents experimental studies of heat transport by phonons in crystalline material...
The thermal conductivity of low-dimensional materials and graphene nanoribbons, in particular, is li...
Heat conduction is an important energy transport process in nature. Phonon is the major energy carri...
This paper presents a critical evaluation of the approximations usually made in thermal conductivity...
With the evolution of semiconductor technology toward nanometer size and gigahertz frequency, the tr...
Thermal conductivity measurements over variable lengths on nanostructures such as nanowires provide ...
The mean free paths (MFPs) of thermal phonons are mostly unknown in many solids. Recent work indicat...
The mean free paths (MFPs) of thermal phonons are mostly unknown in many solids. Recent work indicat...
Knowledge of the mean-free-path distribution of heat-carrying phonons is key to understanding phonon...
Heat conduction in nanomaterials is an important area of study, with both fundamental and technologi...
Size effects in heat conduction, which occur when phonon mean free paths (MFPs) are comparable to ch...
International audienceWe demonstrate an experimental method to obtain information of thermal phonon ...
International audienceWe demonstrate an experimental method to obtain information of thermal phonon ...
This dissertation presents experimental studies of heat transport by phonons in crystalline material...
International audienceWe demonstrate an experimental method to obtain information of thermal phonon ...
This dissertation presents experimental studies of heat transport by phonons in crystalline material...
The thermal conductivity of low-dimensional materials and graphene nanoribbons, in particular, is li...
Heat conduction is an important energy transport process in nature. Phonon is the major energy carri...
This paper presents a critical evaluation of the approximations usually made in thermal conductivity...
With the evolution of semiconductor technology toward nanometer size and gigahertz frequency, the tr...