International audienceThermal transport properties of amorphous materials at low temperatures are governed by the interaction between phonons and localized excitations referred to as tunneling two level systems (TLS). The temperature variation of the thermal conductivity of these amorphous materials is considered as universal and is characterized by a quadratic power law. This is well described by the phenomenological TLS model even though its microscopic explanation is still elusive. Here, by scaling down to the nanometer scale amorphous systems much below the bulk phonon-TLS mean free path, we probed the robustness of that model in restricted geometry systems. Using very sensitive thermal conductance measurements, we demonstrate that the ...
The diameter dependence of the thermal conductivity of nanowires is usually modeled using Matthiesse...
Thermal conductivity of a model nanowire, composed of Zr-Ti-Cu-Ni-Be amorphous alloy, has been studi...
To understand the mechanisms of the heat transport at small length scales, we are fabricating comple...
Thermal transport properties of amorphous materials at low temperatures are governed by the interact...
Heat conduction is an important energy transport process in nature. Phonon is the major energy carri...
Heat conduction is an important energy transport process in nature. Phonon is the major en...
This PhD entitled "Nanoscale structuration effect on the phonon transport at low temperature" take p...
ABSTRACT We compute the lattice thermal conductivity (κ) of silicon nanowires as a function of tempe...
We study the thermal properties of ultra-narrow silicon nanowires (NW) with diameters from 3 nm to 1...
hhThe thermal conductance of straight and corrugated monocrystalline silicon nanowires has been meas...
The thermal conductivity (k) of a semiconducting nanostructure is dramatically reduced from the bulk...
Thermal transport through various nanowires has attracted extensive attention in the past two decade...
We present an analytical model and molecular-dynamics simulations of the phonon heat transport in na...
This review summarizes recent studies of thermal transport in nanoscaled semiconductors. Different f...
Phonon properties of small Si nanowires in [110] direction have been analyzed using density function...
The diameter dependence of the thermal conductivity of nanowires is usually modeled using Matthiesse...
Thermal conductivity of a model nanowire, composed of Zr-Ti-Cu-Ni-Be amorphous alloy, has been studi...
To understand the mechanisms of the heat transport at small length scales, we are fabricating comple...
Thermal transport properties of amorphous materials at low temperatures are governed by the interact...
Heat conduction is an important energy transport process in nature. Phonon is the major energy carri...
Heat conduction is an important energy transport process in nature. Phonon is the major en...
This PhD entitled "Nanoscale structuration effect on the phonon transport at low temperature" take p...
ABSTRACT We compute the lattice thermal conductivity (κ) of silicon nanowires as a function of tempe...
We study the thermal properties of ultra-narrow silicon nanowires (NW) with diameters from 3 nm to 1...
hhThe thermal conductance of straight and corrugated monocrystalline silicon nanowires has been meas...
The thermal conductivity (k) of a semiconducting nanostructure is dramatically reduced from the bulk...
Thermal transport through various nanowires has attracted extensive attention in the past two decade...
We present an analytical model and molecular-dynamics simulations of the phonon heat transport in na...
This review summarizes recent studies of thermal transport in nanoscaled semiconductors. Different f...
Phonon properties of small Si nanowires in [110] direction have been analyzed using density function...
The diameter dependence of the thermal conductivity of nanowires is usually modeled using Matthiesse...
Thermal conductivity of a model nanowire, composed of Zr-Ti-Cu-Ni-Be amorphous alloy, has been studi...
To understand the mechanisms of the heat transport at small length scales, we are fabricating comple...