We report on the diffusive-ballistic thermal conductance of multi-moded single-crystal silicon beams measured below 1 K. It is shown that the phonon mean-free-path is a strong function of the surface roughness characteristics of the beams. This effect is enhanced in diffuse beams with lengths much larger than, even when the surface is fairly smooth, 510 nm rms, and the peak thermal wavelength is 0.6 microns. Resonant phonon scattering has been observed in beams with a pitted surface morphology and characteristic pit depth of 30 nm. Hence, if the surface roughness is not adequately controlled, the thermal conductance can vary significantly for diffuse beams fabricated across a wafer. In contrast, when the beam length is of order, the conduct...
The thermal conductivity (k) of a semiconducting nanostructure is dramatically reduced from the bulk...
Thermal transport in silicon nanowires has captured the attention of scientists for understanding ph...
Creating technologies to address increasingly diverse challenges ranging from biomedical devices to ...
Nanostructured materials exhibit low thermal conductivity because of the additional scattering due t...
Controlling thermal energy transfer at the nanoscale and thermal properties has become critically im...
This is an open access article published under an ACS AuthorChoice License. See Standard ACS AuthorC...
A detailed understanding of the connections of fabrication and processing to structural and thermal ...
A detailed understanding of the connections of fabrication and processing to structural and thermal ...
Polycrystalline silicon is used in microelectronic and microelectromechanical devices for which ther...
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 ...
Altres ajuts: this work was supported by the CERCA Programme / Generalitat de Catalunya.Controlling ...
Nanostructured silicon is a promising material for thermoelectric conversion because the thermal con...
Diffusive phonon transport in nanostructured materials has been a subject of intense interest and mi...
International audienceThe ability to precisely control the thermal conductivity (κ) of a material is...
The thermal conductivity (k) of a semiconducting nanostructure is dramatically reduced from the bulk...
Thermal transport in silicon nanowires has captured the attention of scientists for understanding ph...
Creating technologies to address increasingly diverse challenges ranging from biomedical devices to ...
Nanostructured materials exhibit low thermal conductivity because of the additional scattering due t...
Controlling thermal energy transfer at the nanoscale and thermal properties has become critically im...
This is an open access article published under an ACS AuthorChoice License. See Standard ACS AuthorC...
A detailed understanding of the connections of fabrication and processing to structural and thermal ...
A detailed understanding of the connections of fabrication and processing to structural and thermal ...
Polycrystalline silicon is used in microelectronic and microelectromechanical devices for which ther...
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 ...
Altres ajuts: this work was supported by the CERCA Programme / Generalitat de Catalunya.Controlling ...
Nanostructured silicon is a promising material for thermoelectric conversion because the thermal con...
Diffusive phonon transport in nanostructured materials has been a subject of intense interest and mi...
International audienceThe ability to precisely control the thermal conductivity (κ) of a material is...
The thermal conductivity (k) of a semiconducting nanostructure is dramatically reduced from the bulk...
Thermal transport in silicon nanowires has captured the attention of scientists for understanding ph...
Creating technologies to address increasingly diverse challenges ranging from biomedical devices to ...