We study theoretically how energy and heat are transferred between the two-dimensional layers of bilayer carrier systems due to the near-field interlayer carrier interaction. We derive the general expressions for interlayer heat transfer and thermal conductance. Approximation formulae and detailed calculations for semiconductor- and graphene-based bilayers are presented. Our calculations for GaAs, Si and graphene bilayers show that the interlayer heat transfer can exceed the electron–phonon heat transfer below the (system-dependent) finite crossover temperature. We show that disorder strongly enhances the interlayer heat transport and pushes the threshold toward higher temperatures
<p>Thermal transport across three-dimensional Lennard-Jones superlattices, two-dimensional heterostr...
When two planar atomic membranes are placed within the van der Waals distance, the charge and heat t...
International audienceWe study the radiative heat transfer between multilayer structures made by a p...
We study theoretically how energy and heat are transferred between the two-dimensional layers of bil...
International audienceIn van der Waals bonded or rotationally disordered multilayer stacks of two-di...
In van der Waals bonded or rotationally disordered multilayer stacks of two-dimensional (2D) materia...
We numerically study the disorder effect on the thermoelectric and thermal transport in bilayer grap...
Van der Waals heterostructures have exhibited interesting physical properties. In this paper, heat t...
In van der Waals bonded or rotationally disordered multilayer stacks of two-dimensional (2D) materia...
The rapid advance in modern electronics and photonics is pushing device design to the micro- and nan...
We use nonequilibrium molecular dynamics to study heat transfer across structures consisting of a fe...
Due to the high surface-to-volume ratio in nanostructured components and devices, thermal transport ...
Step junctions are often present in layered materials, i.e. where single-layer regions meet multilay...
This is a theoretical study of electron transport in gated bilayer graphene —a novel semiconducting ...
Thermoelectric power (TEP) is measured in bilayer graphene for various temperatures and charge-carri...
<p>Thermal transport across three-dimensional Lennard-Jones superlattices, two-dimensional heterostr...
When two planar atomic membranes are placed within the van der Waals distance, the charge and heat t...
International audienceWe study the radiative heat transfer between multilayer structures made by a p...
We study theoretically how energy and heat are transferred between the two-dimensional layers of bil...
International audienceIn van der Waals bonded or rotationally disordered multilayer stacks of two-di...
In van der Waals bonded or rotationally disordered multilayer stacks of two-dimensional (2D) materia...
We numerically study the disorder effect on the thermoelectric and thermal transport in bilayer grap...
Van der Waals heterostructures have exhibited interesting physical properties. In this paper, heat t...
In van der Waals bonded or rotationally disordered multilayer stacks of two-dimensional (2D) materia...
The rapid advance in modern electronics and photonics is pushing device design to the micro- and nan...
We use nonequilibrium molecular dynamics to study heat transfer across structures consisting of a fe...
Due to the high surface-to-volume ratio in nanostructured components and devices, thermal transport ...
Step junctions are often present in layered materials, i.e. where single-layer regions meet multilay...
This is a theoretical study of electron transport in gated bilayer graphene —a novel semiconducting ...
Thermoelectric power (TEP) is measured in bilayer graphene for various temperatures and charge-carri...
<p>Thermal transport across three-dimensional Lennard-Jones superlattices, two-dimensional heterostr...
When two planar atomic membranes are placed within the van der Waals distance, the charge and heat t...
International audienceWe study the radiative heat transfer between multilayer structures made by a p...