Size effects in heat conduction, which occur when phonon mean free paths (MFPs) are comparable to characteristic lengths, are being extensively explored in many nanoscale systems for energy applications. Knowledge of MFPs is essential to understanding size effects, yet MFPs are largely unknown for most materials. Here, we introduce the first experimental technique which can measure MFP distributions over a wide range of length scales and materials. Using this technique, we measure the MFP distribution of silicon for the first time and obtain good agreement with first-principles calculations.United States. Dept. of Energy. Office of Basic Energy Sciences (Grant No. DE-SC0001299/DE-FG02-09ER46577)Center for Clean Water and Clean Energy at MIT...
Knowledge of the mean-free-path distribution of heat-carrying phonons is key to understanding phonon...
International audienceWe demonstrate an experimental method to obtain information of thermal phonon ...
<p>The operating temperature of energy conversion and electronic devices affects their efficiency an...
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...
Thermal conductivity measurements over variable lengths on nanostructures such as nanowires provide ...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).Knowledge of the mean-free-p...
The frequency-dependent mean free paths (MFPs) of vibrational heat carriers in amorphous silicon are...
The frequency-dependent mean free paths (MFPs) of vibrational heat carriers in amorphous silicon are...
The frequency-dependent mean free paths (MFPs) of vibrational heat carriers in amorphous silicon are...
International audienceWe demonstrate an experimental method to obtain information of thermal phonon ...
The operating temperature of energy conversion and electronic devices affects their efficiency and e...
International audienceWe demonstrate an experimental method to obtain information of thermal phonon ...
Thermal conductivity measurements over variable lengths on nanostructures such as nanowires provide ...
Knowledge of the mean-free-path distribution of heat-carrying phonons is key to understanding phonon...
International audienceWe demonstrate an experimental method to obtain information of thermal phonon ...
<p>The operating temperature of energy conversion and electronic devices affects their efficiency an...
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...
Thermal conductivity measurements over variable lengths on nanostructures such as nanowires provide ...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).Knowledge of the mean-free-p...
The frequency-dependent mean free paths (MFPs) of vibrational heat carriers in amorphous silicon are...
The frequency-dependent mean free paths (MFPs) of vibrational heat carriers in amorphous silicon are...
The frequency-dependent mean free paths (MFPs) of vibrational heat carriers in amorphous silicon are...
International audienceWe demonstrate an experimental method to obtain information of thermal phonon ...
The operating temperature of energy conversion and electronic devices affects their efficiency and e...
International audienceWe demonstrate an experimental method to obtain information of thermal phonon ...
Thermal conductivity measurements over variable lengths on nanostructures such as nanowires provide ...
Knowledge of the mean-free-path distribution of heat-carrying phonons is key to understanding phonon...
International audienceWe demonstrate an experimental method to obtain information of thermal phonon ...
<p>The operating temperature of energy conversion and electronic devices affects their efficiency an...