Thermal transport in a quasi-ballistic regime is determined not only by the local temperature $T(r)$, or its gradient $\nabla T(r)$, but also by temperature distribution at neighboring points. For an accurate description of non-local effects on thermal transport, we employ the thermal distributor, $\Theta (r,r')$, which provides the temperature response of the system at point $r$ to the heat input at point $r'$. We determine the thermal distributors from the linearized Peierls-Boltzmann equation (LPBE) and the relaxation time approximation (RTA) of the Peierls-Boltzmann equation and employ them to describe thermal transport in quasi-ballistic graphene devices.Comment: 15 pages, 7 figure
ue to its unique thermal properties, graphene has generated considerable interest in the context of ...
Nonlocal effects on heat transport beyond a simple Fourier description are analyzed in a thermodynam...
peer reviewedAs microelectronic devices are important in many applications, their heat management ne...
In the paper we deal with ballistic heat transport in a graphene lattice subjected to a point heat s...
We investigate the features arising from hydrodynamic effects in graphene and phosphorene devices wi...
In the present work, we study heat transport through a one dimensional time-dependent nanomechanical...
Nonequilibrium molecular dynamics (NEMD) has been extensively used to study thermal transport at var...
Nonequilibrium molecular dynamics (NEMD) has been extensively used to study thermal transport at var...
Transient heat dissipation in close-packed quasi-2D nanoline and 3D nanocuboid hotspot systems is st...
Thermal management becomes increasingly important as the device size reduces to the nanosize. The in...
We explore nonlocal effects in radially-symmetric heat transport in silicon thin layers and in graph...
It is generally understood that Fourier\u27s law does not describe ballistic phonon transport, which...
International audienceThe effective thermal conductivity of materials decreases when their dimension...
We theoretically and experimentally studied the thermal transport properties in various graphene-bas...
Heat transfer is ubiquitous in both naturally occurring and engineered materials. As technology prog...
ue to its unique thermal properties, graphene has generated considerable interest in the context of ...
Nonlocal effects on heat transport beyond a simple Fourier description are analyzed in a thermodynam...
peer reviewedAs microelectronic devices are important in many applications, their heat management ne...
In the paper we deal with ballistic heat transport in a graphene lattice subjected to a point heat s...
We investigate the features arising from hydrodynamic effects in graphene and phosphorene devices wi...
In the present work, we study heat transport through a one dimensional time-dependent nanomechanical...
Nonequilibrium molecular dynamics (NEMD) has been extensively used to study thermal transport at var...
Nonequilibrium molecular dynamics (NEMD) has been extensively used to study thermal transport at var...
Transient heat dissipation in close-packed quasi-2D nanoline and 3D nanocuboid hotspot systems is st...
Thermal management becomes increasingly important as the device size reduces to the nanosize. The in...
We explore nonlocal effects in radially-symmetric heat transport in silicon thin layers and in graph...
It is generally understood that Fourier\u27s law does not describe ballistic phonon transport, which...
International audienceThe effective thermal conductivity of materials decreases when their dimension...
We theoretically and experimentally studied the thermal transport properties in various graphene-bas...
Heat transfer is ubiquitous in both naturally occurring and engineered materials. As technology prog...
ue to its unique thermal properties, graphene has generated considerable interest in the context of ...
Nonlocal effects on heat transport beyond a simple Fourier description are analyzed in a thermodynam...
peer reviewedAs microelectronic devices are important in many applications, their heat management ne...