We have investigated the fabrication and computational modelling of threedimensional phononic crystals for the observation of full band gaps for thermal phonons at sub-kelvin temperatures. Self-assembled arrays of monodisperse polystyrene nanospheres have been fabricated using a vertical deposition technique. Optimal conditions for increasing crystal domain size and crystalline quality have been studied. In addition, the phononic band structure has been computed using the finite element method for the simple cubic lattice. The dependence of band structure on contact area between spheres has also been studied. For small enough contact area a large band gap is observed, predicting a strong influence on sub-Kelvin thermal transport.pee...
Phononic Crystals (PnCs) are novel materials comprised of a periodic structure of inclusions in a ma...
Recent work has demonstrated that nanostructuring of a semiconductor material to form a phononic cry...
Phononic band gap crystals (PnCs) are periodic composite materials and well known for their novel pr...
Controlling thermal transport at the nanoscale is vital for many applications. Previously, it has be...
This thesis focuses on studying phononic crystal structures. More specifically, it is aimed at fabr...
Thermal transport is an important physical phenomenon, and it has recently become even more relevant...
While phononic crystals can be theoretically modeled with a variety of analytical and numerical meth...
The phenomenon of thermoelectric energy conversion holds great promise in harvesting wasted heat and...
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...
In recent years, phononic crystals have emerged as a possible route for engineering the thermal prop...
Phononic Crystals (PnCs) are novel materials comprised of a periodic structure of inclusions in a ma...
Abstract. Controlling thermal transport has become relevant in recent years. Traditionally, this con...
In this thesis, I present the fabrication process of three-dimensional (3D) solid-in-solid phononic ...
Nanocrystal superlattices (NCSLs) are materials formed by assembly of monodisperse nanocrystal build...
Phononic Crystals (PnCs) are novel materials comprised of a periodic structure of inclusions in a ma...
Recent work has demonstrated that nanostructuring of a semiconductor material to form a phononic cry...
Phononic band gap crystals (PnCs) are periodic composite materials and well known for their novel pr...
Controlling thermal transport at the nanoscale is vital for many applications. Previously, it has be...
This thesis focuses on studying phononic crystal structures. More specifically, it is aimed at fabr...
Thermal transport is an important physical phenomenon, and it has recently become even more relevant...
While phononic crystals can be theoretically modeled with a variety of analytical and numerical meth...
The phenomenon of thermoelectric energy conversion holds great promise in harvesting wasted heat and...
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...
In recent years, phononic crystals have emerged as a possible route for engineering the thermal prop...
Phononic Crystals (PnCs) are novel materials comprised of a periodic structure of inclusions in a ma...
Abstract. Controlling thermal transport has become relevant in recent years. Traditionally, this con...
In this thesis, I present the fabrication process of three-dimensional (3D) solid-in-solid phononic ...
Nanocrystal superlattices (NCSLs) are materials formed by assembly of monodisperse nanocrystal build...
Phononic Crystals (PnCs) are novel materials comprised of a periodic structure of inclusions in a ma...
Recent work has demonstrated that nanostructuring of a semiconductor material to form a phononic cry...
Phononic band gap crystals (PnCs) are periodic composite materials and well known for their novel pr...