International audienceThe emergence of the area of nanophononics requires the development of terahertz (THz) acoustic devices with tailored properties. We describe nonperiodic planar nanostructures with specific THz phononic response and superior performance. We show that improved devices based on GaAs and AlAs layers can be designed using an optimization Nelder-Mead simplex method, and grown with state-of-the-art molecular beam epitaxy. We also demonstrate that high-resolution Raman scattering provides a powerful tool to characterize these devices. We illustrate the concept with results on acoustic THz edge and color filters. (c) 2006 American Institute of Physics
Acoustoelectric devices convert acoustic energy to electrical energy and vice versa. Devices working...
Terahertz (THz) technology is receiving a wide interest nowadays, developing more researches worldwi...
This dissertation reports the results of the investigation of nanoscale pillar structures with engin...
International audienceWe describe multilayer acoustic nanowave devices based on aperiodic stacks of ...
This thesis presents an experimental and theoretical study of the acoustic phonon dynamics at the na...
Transport of heat and hypersound with gigahertz (GHz) to terahertz (THz) phonons is crucial for heat...
Nanophononics, i.e. acoustic phonon engineering, is a promising research domain with potential in th...
Progress is described in experiments to generate coherent terahertz acoustic phonons in silicon dopi...
Acoustic vibrations at the nanoscale (GHz-THz frequencies) and their interactions with electrons, ph...
Phonons are quasi-particles relatively unexploited for application purposes, in comparison with elec...
We show the resonant behavior of ?0.5-THz longitudinal acoustic (LA) phonons in an acoustic nanocavi...
This work offers perspectives on phonon-transport studies in the gigahertz (GHz) to terahertz (THz) ...
Terahertz time domain spectroscopy has been used to study low frequency confined acoustic phonons of...
Phonon optics concerns operations with high-frequency acoustic waves in solid media in a similar way...
12 pages, 5 figuresInternational audienceWe introduce a novel ultra-compact nanocapacitor of coheren...
Acoustoelectric devices convert acoustic energy to electrical energy and vice versa. Devices working...
Terahertz (THz) technology is receiving a wide interest nowadays, developing more researches worldwi...
This dissertation reports the results of the investigation of nanoscale pillar structures with engin...
International audienceWe describe multilayer acoustic nanowave devices based on aperiodic stacks of ...
This thesis presents an experimental and theoretical study of the acoustic phonon dynamics at the na...
Transport of heat and hypersound with gigahertz (GHz) to terahertz (THz) phonons is crucial for heat...
Nanophononics, i.e. acoustic phonon engineering, is a promising research domain with potential in th...
Progress is described in experiments to generate coherent terahertz acoustic phonons in silicon dopi...
Acoustic vibrations at the nanoscale (GHz-THz frequencies) and their interactions with electrons, ph...
Phonons are quasi-particles relatively unexploited for application purposes, in comparison with elec...
We show the resonant behavior of ?0.5-THz longitudinal acoustic (LA) phonons in an acoustic nanocavi...
This work offers perspectives on phonon-transport studies in the gigahertz (GHz) to terahertz (THz) ...
Terahertz time domain spectroscopy has been used to study low frequency confined acoustic phonons of...
Phonon optics concerns operations with high-frequency acoustic waves in solid media in a similar way...
12 pages, 5 figuresInternational audienceWe introduce a novel ultra-compact nanocapacitor of coheren...
Acoustoelectric devices convert acoustic energy to electrical energy and vice versa. Devices working...
Terahertz (THz) technology is receiving a wide interest nowadays, developing more researches worldwi...
This dissertation reports the results of the investigation of nanoscale pillar structures with engin...