We present a model which deepens into the role that normal scattering has on the thermal conductivity in semiconductor bulk, micro, and nanoscale samples. Thermal conductivity as a function of the temperature undergoes a smooth transition from a kinetic to a collective regime that depends on the importance of normal scattering events. We demonstrate that in this transition, the key point to fit experimental data is changing the way to perform the average on the scattering rates. We apply the model to bulk Si with different isotopic compositions obtaining an accurate fit. Then we calculate the thermal conductivity of Si thin films and nanowires by only introducing the effective size as additional parameter. The model provides a better predic...
Thermal conductivity of thin silicon nanowires (1.4−8.3 nm) including the realistic crystalline stru...
By using molecular dynamics simulations, we study thermal conductivity of silicon nanowires (SiNWs) ...
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...
The diameter dependence of the thermal conductivity of nanowires is usually modeled using Matthiesse...
Heat management is crucial in the design of nanoscale devices as the operating temperature determine...
The complexity of heat transport in silicon nanowires (SiNWs) and, specifically, its dependence on t...
ABSTRACT We model and compare the thermal conductivity of rough semiconductor nanowires (NWs) of Si,...
International audienceWe present a rigorous analysis of the thermal conductivity of bulk silicon (Si...
The thermal conductivity of free-standing silicon nanowires (SiNWs) with diameters from 1-3 nm has b...
We present a kinetic model to investigate the anomalous thermal conductivity in silicon nanowires (S...
In this research, the efficiency of thermoelectric effect in different dimensions is investigated. T...
International audienceThermal transport properties of amorphous materials at low temperatures are go...
Phonon properties of small Si nanowires in [110] direction have been analyzed using density function...
The mechanisms of thermal transport in defect-free silicon nanostructures are examined using a combi...
Thermal conductivity of thin silicon nanowires (1.4−8.3 nm) including the realistic crystalline stru...
By using molecular dynamics simulations, we study thermal conductivity of silicon nanowires (SiNWs) ...
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...
The diameter dependence of the thermal conductivity of nanowires is usually modeled using Matthiesse...
Heat management is crucial in the design of nanoscale devices as the operating temperature determine...
The complexity of heat transport in silicon nanowires (SiNWs) and, specifically, its dependence on t...
ABSTRACT We model and compare the thermal conductivity of rough semiconductor nanowires (NWs) of Si,...
International audienceWe present a rigorous analysis of the thermal conductivity of bulk silicon (Si...
The thermal conductivity of free-standing silicon nanowires (SiNWs) with diameters from 1-3 nm has b...
We present a kinetic model to investigate the anomalous thermal conductivity in silicon nanowires (S...
In this research, the efficiency of thermoelectric effect in different dimensions is investigated. T...
International audienceThermal transport properties of amorphous materials at low temperatures are go...
Phonon properties of small Si nanowires in [110] direction have been analyzed using density function...
The mechanisms of thermal transport in defect-free silicon nanostructures are examined using a combi...
Thermal conductivity of thin silicon nanowires (1.4−8.3 nm) including the realistic crystalline stru...
By using molecular dynamics simulations, we study thermal conductivity of silicon nanowires (SiNWs) ...
International audienceThe ability to precisely control the thermal conductivity (κ) of a material is...