International audienceCoherent phonon transport is regarded as a promising strategy for controlling thermal properties in solids using the wave nature of phonons. However, no clear distinction between the spatial and temporal phonon coherence has been accounted for and a formalism that quantifies these two effects is still to be found. In this work, we propose a statistical approach for calculating the spatial and temporal coherence spectra using molecular dynamics simulations. We provide a microscopic assessment of these properties and we theoretically demonstrate that, while temporal and spatial coherence can be analytically related under specific conditions, they represent two characteristic lengths that set apart different physical effe...
In this thesis, two atomic level simulation methods, i.e., first principles perturbation theory and ...
Two frequency-domain methods for predicting phonon frequencies and life-times using the phonon spect...
In this work, we present a novel heat source model, the coherent phonon pulse (CPP), composed of spa...
International audienceCoherent phonon transport is regarded as a promising strategy for controlling ...
4 pages, 3 figuresInternational audienceAs a fundamental physical quantity of thermal phonons, tempo...
As a fundamental physical quantity of thermal phonons, temporal coherence participates in a broad ra...
The concept of coherence is one of the fundamental phenomena in electronics and optics. In addition ...
International audienceThrough nonequilibrium molecular dynamics simulations, we report the direct nu...
International audienceWe demonstrate the existence of a coherent transport of thermal energy in supe...
International audienceOur direct atomic simulations reveal that a thermally activated phonon mode in...
In solids and molecules, atoms vibrate about their respective equilibrium positions at finite temper...
Through nonequilibrium molecular dynamics simulations, we report the direct numerical evidence of th...
International audienceWe report a theoretical investigation of coherent-to-incoherent heat conductio...
International audienceNano-phononic crystals have attracted a great deal of research interest in the...
Thermal conductivity is an important material property which affects the performance of a wide range...
In this thesis, two atomic level simulation methods, i.e., first principles perturbation theory and ...
Two frequency-domain methods for predicting phonon frequencies and life-times using the phonon spect...
In this work, we present a novel heat source model, the coherent phonon pulse (CPP), composed of spa...
International audienceCoherent phonon transport is regarded as a promising strategy for controlling ...
4 pages, 3 figuresInternational audienceAs a fundamental physical quantity of thermal phonons, tempo...
As a fundamental physical quantity of thermal phonons, temporal coherence participates in a broad ra...
The concept of coherence is one of the fundamental phenomena in electronics and optics. In addition ...
International audienceThrough nonequilibrium molecular dynamics simulations, we report the direct nu...
International audienceWe demonstrate the existence of a coherent transport of thermal energy in supe...
International audienceOur direct atomic simulations reveal that a thermally activated phonon mode in...
In solids and molecules, atoms vibrate about their respective equilibrium positions at finite temper...
Through nonequilibrium molecular dynamics simulations, we report the direct numerical evidence of th...
International audienceWe report a theoretical investigation of coherent-to-incoherent heat conductio...
International audienceNano-phononic crystals have attracted a great deal of research interest in the...
Thermal conductivity is an important material property which affects the performance of a wide range...
In this thesis, two atomic level simulation methods, i.e., first principles perturbation theory and ...
Two frequency-domain methods for predicting phonon frequencies and life-times using the phonon spect...
In this work, we present a novel heat source model, the coherent phonon pulse (CPP), composed of spa...