Conventional techniques for thermal conductivity measurements can lead to unreliable results when applied to nanostructures because heaters and temperature sensors needed for the measurement cannot have a negligible size and therefore perturb the result. In this paper, we focus on the 3w technique, applied to the evaluation of the thermal conductivity of suspended silicon nanoribbons. We introduce a numerical approach based on the finite element solution of the electrical and thermal transport equations and compare its results with those of conventional methods. We show that with our approach we achieve an excellent fit of the experimental data, in particular, for nanostructured materials
The one-dimensional geometry of silicon nanowire helps to overcome the rigid and brittle nature of b...
textThis work presents the development and application of analytical, numerical, and experimental me...
Thermal conductance calculations of silicon nanowires: comparison with diamond nanowires Kohei Yamam...
With the advancement of synthetic nanostructures, more attention has been directed toward probing lo...
We report indirect measurements of thermal conductivity in silicon nanostructures. We have exploite...
It is presented a process for engineering suspended Si nanostructures in order to measure the therma...
Nanostructured silicon is a promising material for thermoelectric conversion because the thermal con...
Silicon-on-insulator based measurement structures have recently been developed to measure the therma...
By using molecular dynamics simulations, we study thermal conductivity of silicon nanowires (SiNWs) ...
It is traditionally challenging to measure the thermal conductivity of nanoscale devices. In this Le...
The complexity of heat transport in silicon nanowires (SiNWs) and, specifically, its dependence on t...
A simple model of thermal conductivity, based on the harmonic theory of solids, is used to study the...
Thermal conductivity of thin silicon nanowires (1.4−8.3 nm) including the realistic crystalline stru...
MasterWe report the influence of dimension or doping concentration on thermal conductivity of silico...
One significant challenge in the development of micro- and nano-electronic devices is thermal manage...
The one-dimensional geometry of silicon nanowire helps to overcome the rigid and brittle nature of b...
textThis work presents the development and application of analytical, numerical, and experimental me...
Thermal conductance calculations of silicon nanowires: comparison with diamond nanowires Kohei Yamam...
With the advancement of synthetic nanostructures, more attention has been directed toward probing lo...
We report indirect measurements of thermal conductivity in silicon nanostructures. We have exploite...
It is presented a process for engineering suspended Si nanostructures in order to measure the therma...
Nanostructured silicon is a promising material for thermoelectric conversion because the thermal con...
Silicon-on-insulator based measurement structures have recently been developed to measure the therma...
By using molecular dynamics simulations, we study thermal conductivity of silicon nanowires (SiNWs) ...
It is traditionally challenging to measure the thermal conductivity of nanoscale devices. In this Le...
The complexity of heat transport in silicon nanowires (SiNWs) and, specifically, its dependence on t...
A simple model of thermal conductivity, based on the harmonic theory of solids, is used to study the...
Thermal conductivity of thin silicon nanowires (1.4−8.3 nm) including the realistic crystalline stru...
MasterWe report the influence of dimension or doping concentration on thermal conductivity of silico...
One significant challenge in the development of micro- and nano-electronic devices is thermal manage...
The one-dimensional geometry of silicon nanowire helps to overcome the rigid and brittle nature of b...
textThis work presents the development and application of analytical, numerical, and experimental me...
Thermal conductance calculations of silicon nanowires: comparison with diamond nanowires Kohei Yamam...