Transport of heat and hypersound with gigahertz (GHz) to terahertz (THz) phonons is crucial for heat management in electronics, mediating signal processing with microwave radiation, thermoelectrics, and various types of sensors based on nanomechanical resonators. Efficient control of heat and sound transport requires new materials, novel experimental techniques, and a detailed knowledge of the interaction of phonons with other elementary excitations. Wave-like heat transport, also known as second sound, has recently attracted renewed attention since it provides several opportunities for overcoming some of the limitations imposed by diffusive transport (Fourier's regime). The frequency-domain detection of GHz-to-THz phonons can be carried ou...
le travail de cette thèse porte sur l’identification et le contrôle des propriétés thermiques et aco...
International audienceThe emergence of the area of nanophononics requires the development of teraher...
International audienceThe world communicates to our senses of vision, hearing, and touch in the lang...
This work offers perspectives on phonon-transport studies in the gigahertz (GHz) to terahertz (THz) ...
International audienceThermal transport at the nanoscale level is attracting attention not only beca...
Phononic crystals are the acoustic analogs of photonic crystals and aim at manipulating phonon trans...
Nanoscale phonon transport is a key process that governs thermal conduction in a wide range of mater...
Phononic crystals (PnCs) control the transport of sound and heat similarly to the control of electri...
The figure of merit of thermoelectric materials can be increased by suppressing the lattice thermal ...
The transfer of heat in non-metallic solids occurs due to propagation of mechanical waves. In crysta...
The design and fabrication of phononic crystals (PnCs) hold the key to control the propagation of he...
Nanophononics, i.e. acoustic phonon engineering, is a promising research domain with potential in th...
The design and fabrication of phononic crystals (PnCs) hold the key to control the propagation of he...
We report measurements of room-temperature mean free paths of long-lived THz acoustic phonons in wur...
In ballistic thermal conduction, the wave characteristics of phonons allow the transmission of energ...
le travail de cette thèse porte sur l’identification et le contrôle des propriétés thermiques et aco...
International audienceThe emergence of the area of nanophononics requires the development of teraher...
International audienceThe world communicates to our senses of vision, hearing, and touch in the lang...
This work offers perspectives on phonon-transport studies in the gigahertz (GHz) to terahertz (THz) ...
International audienceThermal transport at the nanoscale level is attracting attention not only beca...
Phononic crystals are the acoustic analogs of photonic crystals and aim at manipulating phonon trans...
Nanoscale phonon transport is a key process that governs thermal conduction in a wide range of mater...
Phononic crystals (PnCs) control the transport of sound and heat similarly to the control of electri...
The figure of merit of thermoelectric materials can be increased by suppressing the lattice thermal ...
The transfer of heat in non-metallic solids occurs due to propagation of mechanical waves. In crysta...
The design and fabrication of phononic crystals (PnCs) hold the key to control the propagation of he...
Nanophononics, i.e. acoustic phonon engineering, is a promising research domain with potential in th...
The design and fabrication of phononic crystals (PnCs) hold the key to control the propagation of he...
We report measurements of room-temperature mean free paths of long-lived THz acoustic phonons in wur...
In ballistic thermal conduction, the wave characteristics of phonons allow the transmission of energ...
le travail de cette thèse porte sur l’identification et le contrôle des propriétés thermiques et aco...
International audienceThe emergence of the area of nanophononics requires the development of teraher...
International audienceThe world communicates to our senses of vision, hearing, and touch in the lang...