The ‘‘textbook’’ phonon mean free path of heat carrying phonons in silicon at room temperature is 40 nm. However, a large contribution to the thermal conductivity comes from low-frequency phonons with much longer mean free paths. We present a simple experiment demonstrating that room-temperature thermal transport in Si significantly deviates from the diffusion model already at micron distances. Absorption of crossed laser pulses in a freestanding silicon membrane sets up a sinusoidal temperature profile that is monitored via diffraction of a probe laser beam. By changing the period of the thermal grating we vary the heat transport distance within the range 1–10 m. At small distances, we observe a reduction in the effective thermal conductiv...
Nanostructured materials exhibit low thermal conductivity because of the additional scattering due t...
<p>We derive an analytical solution to the Boltzmann transport equation (BTE) to relate nondiffusive...
Altres ajuts: ICN2 is supported by the CERCA Programme/Generalitat de Catalunya.In this study, we us...
The "textbook" phonon mean free path of heat carrying phonons in silicon at room temperature is simi...
The “textbook” phonon mean free path of heat carrying phonons in silicon at room temperature is ∼40 ...
When the size of semiconductors is smaller than the phonon mean free path, phonons can carry heat wi...
et al.Studying thermal transport at the nanoscale poses formidable experimental challenges due both ...
We studied the phonon transport in free-standing 1 µm thick silicon-nitride membranes at temperature...
When the size of semiconductors is smaller than the phonon mean free path, phonons can carry heat wi...
<p>Nondiffusive thermal transport occurs when length or time scales of a system are on the order of ...
Knowledge of the mean-free-path distribution of heat-carrying phonons is key to understanding phonon...
The question of what fraction of the total heat flow is transported by phonons with different mean-f...
Resumen del trabajo presentado al XXXth International Winterschool on Electronics Properties of Nove...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
International audienceEfficient heat dissipation in micro/nano electronics requires long-distance pr...
Nanostructured materials exhibit low thermal conductivity because of the additional scattering due t...
<p>We derive an analytical solution to the Boltzmann transport equation (BTE) to relate nondiffusive...
Altres ajuts: ICN2 is supported by the CERCA Programme/Generalitat de Catalunya.In this study, we us...
The "textbook" phonon mean free path of heat carrying phonons in silicon at room temperature is simi...
The “textbook” phonon mean free path of heat carrying phonons in silicon at room temperature is ∼40 ...
When the size of semiconductors is smaller than the phonon mean free path, phonons can carry heat wi...
et al.Studying thermal transport at the nanoscale poses formidable experimental challenges due both ...
We studied the phonon transport in free-standing 1 µm thick silicon-nitride membranes at temperature...
When the size of semiconductors is smaller than the phonon mean free path, phonons can carry heat wi...
<p>Nondiffusive thermal transport occurs when length or time scales of a system are on the order of ...
Knowledge of the mean-free-path distribution of heat-carrying phonons is key to understanding phonon...
The question of what fraction of the total heat flow is transported by phonons with different mean-f...
Resumen del trabajo presentado al XXXth International Winterschool on Electronics Properties of Nove...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
International audienceEfficient heat dissipation in micro/nano electronics requires long-distance pr...
Nanostructured materials exhibit low thermal conductivity because of the additional scattering due t...
<p>We derive an analytical solution to the Boltzmann transport equation (BTE) to relate nondiffusive...
Altres ajuts: ICN2 is supported by the CERCA Programme/Generalitat de Catalunya.In this study, we us...