In recent years, the idea of controlling phonon thermal transport coherently using phononic crystals has been introduced. Here, we extend our previous numerical studies of ballistic low-temperature heat transport in two-dimensional hole-array phononic crystals, and concentrate on the effect of the lattice periodicity. We find that thermal conductance can be either enhanced or reduced by large factors, depending on the the lattice period. Analysis shows that both the density of states and the average group velocity are strongly affected by the periodic structuring. The largest effect for the reduction seen for larger period structures comes from the strong reduction of the group velocities, but a contribution also comes from the reduction of...
International audienceUnderstanding how thermal-phonon paths can be shaped is key for controlling he...
Coherent phonon heat conduction has recently been confirmed experimentally in superlattice structure...
We discuss recent advances in the microscopic simulations of thermal conductivity through the prism ...
Abstract. Controlling thermal transport has become relevant in recent years. Traditionally, this con...
Periodic hole-array phononic crystals (PnCs) can strongly modify phonon dispersion relations and hav...
Controlling thermal transport at the nanoscale is vital for many applications. Previously, it has be...
Phononic crystals are the acoustic analogs of photonic crystals and aim at manipulating phonon trans...
International audienceThermal transport at the nanoscale level is attracting attention not only beca...
International audienceNano-phononic crystals have attracted a great deal of research interest in the...
The theory of anharmonic three-phonon interactions predicts an expression for the mean free path of ...
Recent work has demonstrated that nanostructuring of a semiconductor material to form a phononic cry...
International audienceThrough nonequilibrium molecular dynamics simulations, we report the direct nu...
Through nonequilibrium molecular dynamics simulations, we report the direct numerical evidence of th...
Phononic crystals have been studied for the past decades as a tool to control the propagation of aco...
An analytical treatment of decomposition of the phonon thermal conductivity of a crystal with a mona...
International audienceUnderstanding how thermal-phonon paths can be shaped is key for controlling he...
Coherent phonon heat conduction has recently been confirmed experimentally in superlattice structure...
We discuss recent advances in the microscopic simulations of thermal conductivity through the prism ...
Abstract. Controlling thermal transport has become relevant in recent years. Traditionally, this con...
Periodic hole-array phononic crystals (PnCs) can strongly modify phonon dispersion relations and hav...
Controlling thermal transport at the nanoscale is vital for many applications. Previously, it has be...
Phononic crystals are the acoustic analogs of photonic crystals and aim at manipulating phonon trans...
International audienceThermal transport at the nanoscale level is attracting attention not only beca...
International audienceNano-phononic crystals have attracted a great deal of research interest in the...
The theory of anharmonic three-phonon interactions predicts an expression for the mean free path of ...
Recent work has demonstrated that nanostructuring of a semiconductor material to form a phononic cry...
International audienceThrough nonequilibrium molecular dynamics simulations, we report the direct nu...
Through nonequilibrium molecular dynamics simulations, we report the direct numerical evidence of th...
Phononic crystals have been studied for the past decades as a tool to control the propagation of aco...
An analytical treatment of decomposition of the phonon thermal conductivity of a crystal with a mona...
International audienceUnderstanding how thermal-phonon paths can be shaped is key for controlling he...
Coherent phonon heat conduction has recently been confirmed experimentally in superlattice structure...
We discuss recent advances in the microscopic simulations of thermal conductivity through the prism ...