Recent experiments have demonstrated that thermal properties of semiconductor nanostructures depend on nanostructure boundary geometry. Phonons are quantized mechanical vibrations that are the dominant carrier of heat in semiconductor materials and their aggregate behavior determine a nanostructure\u27s thermal performance. Phonon-geometry scattering processes as well as waveguiding effects which result from coherent phonon interference are responsible for the shape dependence of thermal transport in these systems. Nanoscale phonon-geometry interactions provide a mechanism by which nanostructure geometry may be used to create materials with targeted thermal properties. However, the ability to manipulate material thermal properties via contr...
The inability to remove heat efficiently is currently one of the stumbling blocks toward further min...
This review summarizes recent studies of thermal transport in nanoscaled semiconductors. Different f...
Thermal management in nanometer size scale devices is becoming a major challenge with the developmen...
Recent experiments have demonstrated that thermal properties of semiconductor nanostructures depend ...
Recent experiments have demonstrated that thermal properties of semiconductor nanostructures depend ...
Recent experiments have demonstrated that thermal properties of semiconductor nanostructures depend ...
Abstract. We have theoretically studied the influence of the nanostructure cladding materials on the...
Diffusive phonon transport in nanostructured materials has been a subject of intense interest and mi...
The phenomenon of thermoelectric energy conversion holds great promise in harvesting wasted heat and...
We present an analytical model and molecular-dynamics simulations of the phonon heat transport in na...
The transfer of heat in non-metallic solids occurs due to propagation of mechanical waves. In crysta...
We study the effect of confinement on the phonon properties of ultra-narrow silicon nanowires of sid...
The mechanisms of thermal transport in defect-free silicon nanostructures are examined using a combi...
We present a kinetic model to investigate the anomalous thermal conductivity in silicon nanowires (S...
The thermal conductivity (k) of a semiconducting nanostructure is dramatically reduced from the bulk...
The inability to remove heat efficiently is currently one of the stumbling blocks toward further min...
This review summarizes recent studies of thermal transport in nanoscaled semiconductors. Different f...
Thermal management in nanometer size scale devices is becoming a major challenge with the developmen...
Recent experiments have demonstrated that thermal properties of semiconductor nanostructures depend ...
Recent experiments have demonstrated that thermal properties of semiconductor nanostructures depend ...
Recent experiments have demonstrated that thermal properties of semiconductor nanostructures depend ...
Abstract. We have theoretically studied the influence of the nanostructure cladding materials on the...
Diffusive phonon transport in nanostructured materials has been a subject of intense interest and mi...
The phenomenon of thermoelectric energy conversion holds great promise in harvesting wasted heat and...
We present an analytical model and molecular-dynamics simulations of the phonon heat transport in na...
The transfer of heat in non-metallic solids occurs due to propagation of mechanical waves. In crysta...
We study the effect of confinement on the phonon properties of ultra-narrow silicon nanowires of sid...
The mechanisms of thermal transport in defect-free silicon nanostructures are examined using a combi...
We present a kinetic model to investigate the anomalous thermal conductivity in silicon nanowires (S...
The thermal conductivity (k) of a semiconducting nanostructure is dramatically reduced from the bulk...
The inability to remove heat efficiently is currently one of the stumbling blocks toward further min...
This review summarizes recent studies of thermal transport in nanoscaled semiconductors. Different f...
Thermal management in nanometer size scale devices is becoming a major challenge with the developmen...