Improving the control of heat flow at the nanoscale is essential for promoting its applications in many fields, such as energy conversion, thermal informatics, and communication technologies. Here we perform a systematic study on the synergistic effect of screw dislocations and surface resonators on thermal transport of Si nanowires and the corresponding mechanisms based on molecular dynamics simulations. We uncover that screw dislocations reduce the thermal conductivity by enhancing the anharmonicity of nanowires due to the nonhomogeneous stress field. For resonant structures, we demonstrate that the suppression of relaxation time is the main mechanism for thermal conductivity reduction. The suppression of relaxation time by more than two ...
International audienceDislocations significantly influence the physical properties of nanomaterials....
International audienceDislocations significantly influence the physical properties of nanomaterials....
Artificial periodic nanostructures, known as phononic crystals, promise to control the thermal prope...
Improving the control of heat flow at the nanoscale is essential for promoting its applications in m...
Improving the control of heat flow at the nanoscale is essential for promoting its applications in m...
International audienceScrew dislocations are known to impede the thermal transport of homogeneous na...
International audienceScrew dislocations are known to impede the thermal transport of homogeneous na...
International audienceScrew dislocations are known to impede the thermal transport of homogeneous na...
Understanding the design rules to obtain materials that enable a tight control of phonon transport o...
Understanding the design rules to obtain materials that enable a tight control of phonon transport o...
Understanding the design rules to obtain materials that enable a tight control of phonon transport o...
International audienceScrew dislocations are known to impede the thermal transport of homogeneous na...
We present an analytical model and molecular-dynamics simulations of the phonon heat transport in na...
International audienceDislocations significantly influence the physical properties of nanomaterials....
International audienceDislocations significantly influence the physical properties of nanomaterials....
International audienceDislocations significantly influence the physical properties of nanomaterials....
International audienceDislocations significantly influence the physical properties of nanomaterials....
Artificial periodic nanostructures, known as phononic crystals, promise to control the thermal prope...
Improving the control of heat flow at the nanoscale is essential for promoting its applications in m...
Improving the control of heat flow at the nanoscale is essential for promoting its applications in m...
International audienceScrew dislocations are known to impede the thermal transport of homogeneous na...
International audienceScrew dislocations are known to impede the thermal transport of homogeneous na...
International audienceScrew dislocations are known to impede the thermal transport of homogeneous na...
Understanding the design rules to obtain materials that enable a tight control of phonon transport o...
Understanding the design rules to obtain materials that enable a tight control of phonon transport o...
Understanding the design rules to obtain materials that enable a tight control of phonon transport o...
International audienceScrew dislocations are known to impede the thermal transport of homogeneous na...
We present an analytical model and molecular-dynamics simulations of the phonon heat transport in na...
International audienceDislocations significantly influence the physical properties of nanomaterials....
International audienceDislocations significantly influence the physical properties of nanomaterials....
International audienceDislocations significantly influence the physical properties of nanomaterials....
International audienceDislocations significantly influence the physical properties of nanomaterials....
Artificial periodic nanostructures, known as phononic crystals, promise to control the thermal prope...