We present a novel contactless technique for thermal conductivity determination and thermal field mapping based on creating a thermal distribution of phonons using a heating laser, while a second laser probes the local temperature through the spectral position of a Raman active mode. The spatial resolution can be as small as 300 nm, whereas its temperature accuracy is ±2 K. We validate this technique investigating the thermal properties of three free-standing single crystalline Si membranes with thickness of 250, 1000, and 2000 nm. We show that for two-dimensional materials such as free-standing membranes or thin films, and for small temperature gradients, the thermal field decays as T(r) ∝ ln(r) in the diffusive limit. The case of large te...
The “textbook” phonon mean free path of heat carrying phonons in silicon at room temperature is ∼40 ...
The "textbook" phonon mean free path of heat carrying phonons in silicon at room temperature is simi...
The ability to measure intrinsic thermal conductivity via a non-contact, non-destructive process is ...
We present a novel contactless technique for thermal conductivity determination and thermal field ma...
Under the terms of the Creative Commons Attribution (CC BY) license to their work.We present a novel...
We report on the reduction of the thermal conductivity in ultra-thin suspended Si membranes with hig...
We report on the reduction of the thermal conductivity in ultra-thin suspended Si membranes with hig...
Heat conduction in silicon can be effectively engineered by means of sub-micrometre porous thin free...
International audienceWe characterize nanometer-thin suspended silicon membranes in the pristine sta...
This AIP article is published under license by AIP: https://publishing.aip.org/wp-content/uploads/20...
In Raman thermometry, several assumptions are made to model the heat conduction and to extract the t...
This PhD thesis deals with the experimental characterization of heat transfer at the nanoscale in ma...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).Knowledge of the mean-free-p...
Mapping the thermal transport properties of materials at the nanoscale is of critical importance for...
Resumen del trabajo presentado al XXXth International Winterschool on Electronics Properties of Nove...
The “textbook” phonon mean free path of heat carrying phonons in silicon at room temperature is ∼40 ...
The "textbook" phonon mean free path of heat carrying phonons in silicon at room temperature is simi...
The ability to measure intrinsic thermal conductivity via a non-contact, non-destructive process is ...
We present a novel contactless technique for thermal conductivity determination and thermal field ma...
Under the terms of the Creative Commons Attribution (CC BY) license to their work.We present a novel...
We report on the reduction of the thermal conductivity in ultra-thin suspended Si membranes with hig...
We report on the reduction of the thermal conductivity in ultra-thin suspended Si membranes with hig...
Heat conduction in silicon can be effectively engineered by means of sub-micrometre porous thin free...
International audienceWe characterize nanometer-thin suspended silicon membranes in the pristine sta...
This AIP article is published under license by AIP: https://publishing.aip.org/wp-content/uploads/20...
In Raman thermometry, several assumptions are made to model the heat conduction and to extract the t...
This PhD thesis deals with the experimental characterization of heat transfer at the nanoscale in ma...
Under the terms of the Creative Commons Attribution License 3.0 (CC-BY).Knowledge of the mean-free-p...
Mapping the thermal transport properties of materials at the nanoscale is of critical importance for...
Resumen del trabajo presentado al XXXth International Winterschool on Electronics Properties of Nove...
The “textbook” phonon mean free path of heat carrying phonons in silicon at room temperature is ∼40 ...
The "textbook" phonon mean free path of heat carrying phonons in silicon at room temperature is simi...
The ability to measure intrinsic thermal conductivity via a non-contact, non-destructive process is ...