This thesis focuses on studying phononic crystal structures. More specifically, it is aimed at fabrication and measurement of thermal properties of two-dimensional (2D) periodic microstructures and three-dimensional (3D) nanostructures. There is great interest in understanding, manipulating and considering application perspective of minimizing of thermal transport in periodic structures. Periodic structures have been studied more on their optical properties, but this thesis places emphasis on their application of manipulating heat. A process of fabricating two-dimensional hole array phononic (2D PnC) structures is described here. It consists of membrane preparation, superconductor-insulatornormal metal-insulator-superconductor (SIN...
In this work, we propose a nanoscale three-dimensional (3D) Si phononic crystal (PnC) with spherical...
Comparing with their bulk counterparts, the nanostructured materials provide superior performance in...
International audienceThermal transport at the nanoscale level is attracting attention not only beca...
Thermal transport is an important physical phenomenon, and it has recently become even more relevant...
Phononic crystals (PnC) are periodic structures analogous to the more common photonic crystals. Inst...
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...
In recent years, phononic crystals have emerged as a possible route for engineering the thermal prop...
We have investigated the fabrication and computational modelling of threedimensional phononic cryst...
International audienceUnderstanding how thermal-phonon paths can be shaped is key for controlling he...
Abstract. Controlling thermal transport has become relevant in recent years. Traditionally, this con...
International audienceRecent developments of elaboration techniques allow the design of low dimensio...
Thermoelectric materials are important in today’s society with a variety of applications. The materi...
International audienceThe wealth of technological patterning technologies of deca-nanometer resoluti...
International audienceWe demonstrate an experimental method to obtain information of thermal phonon ...
In this work, we propose a nanoscale three-dimensional (3D) Si phononic crystal (PnC) with spherical...
Comparing with their bulk counterparts, the nanostructured materials provide superior performance in...
International audienceThermal transport at the nanoscale level is attracting attention not only beca...
Thermal transport is an important physical phenomenon, and it has recently become even more relevant...
Phononic crystals (PnC) are periodic structures analogous to the more common photonic crystals. Inst...
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...
In recent years, phononic crystals have emerged as a possible route for engineering the thermal prop...
We have investigated the fabrication and computational modelling of threedimensional phononic cryst...
International audienceUnderstanding how thermal-phonon paths can be shaped is key for controlling he...
Abstract. Controlling thermal transport has become relevant in recent years. Traditionally, this con...
International audienceRecent developments of elaboration techniques allow the design of low dimensio...
Thermoelectric materials are important in today’s society with a variety of applications. The materi...
International audienceThe wealth of technological patterning technologies of deca-nanometer resoluti...
International audienceWe demonstrate an experimental method to obtain information of thermal phonon ...
In this work, we propose a nanoscale three-dimensional (3D) Si phononic crystal (PnC) with spherical...
Comparing with their bulk counterparts, the nanostructured materials provide superior performance in...
International audienceThermal transport at the nanoscale level is attracting attention not only beca...