Accessing the regime of coherent phonon propagation in nanostructures opens enormous possibilities to control the thermal conductivity in energy harvesting devices, phononic circuits, etc. In this paper we show that coherent phonons contribute substantially to the thermal conductivity of LaCoO3/SrTiO3 oxide superlattices, up to room temperature. We show that their contribution can be tuned through small variations of the superlattice periodicity, without changing the total superlattice thickness. Using this strategy, we tuned the thermal conductivity by 20% at room temperature. We also discuss the role of interface mixing and epitaxial relaxation as an extrinsic, material dependent key parameter for understanding the thermal conductivity of...
Promoting coherent transport of phonons at material interfaces is a promising strategy for controlli...
Periodic hole-array phononic crystals (PnCs) can strongly modify phonon dispersion relations and hav...
Solid-state energy conversion technologies such as thermoelectric and thermionic refrigeration and p...
Accessing the regime of coherent phonon propagation in nanostructures opens enormous possibilities t...
Accessing the regime of coherent phonon propagation in nanostructures opens enormous possibilities t...
| openaire: EC/H2020/734187/EU//SPICOLOST Funding Information: This work has received financial supp...
Coherent phonon heat conduction has recently been confirmed experimentally in superlattice structure...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
The control of heat conduction through the manipulation of phonons as coherent waves in solids is of...
Thermal transport in solids has recently seen great advances. This thesis focuses on thermal transp...
International audienceThe value measured in the amorphous structure with the same chemical compositi...
Lattice heat conduction can be modulated via nanostructure interfaces. Although advances have been m...
Randomizing the layer thickness of superlattices (SL) can lead to localization of coherent phonons a...
Crystal phase engineering gives access to new types of periodic nanostructures, such as the so-calle...
Waste heat management and recovery and discovering energy-efficient devices are important problems t...
Promoting coherent transport of phonons at material interfaces is a promising strategy for controlli...
Periodic hole-array phononic crystals (PnCs) can strongly modify phonon dispersion relations and hav...
Solid-state energy conversion technologies such as thermoelectric and thermionic refrigeration and p...
Accessing the regime of coherent phonon propagation in nanostructures opens enormous possibilities t...
Accessing the regime of coherent phonon propagation in nanostructures opens enormous possibilities t...
| openaire: EC/H2020/734187/EU//SPICOLOST Funding Information: This work has received financial supp...
Coherent phonon heat conduction has recently been confirmed experimentally in superlattice structure...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
The control of heat conduction through the manipulation of phonons as coherent waves in solids is of...
Thermal transport in solids has recently seen great advances. This thesis focuses on thermal transp...
International audienceThe value measured in the amorphous structure with the same chemical compositi...
Lattice heat conduction can be modulated via nanostructure interfaces. Although advances have been m...
Randomizing the layer thickness of superlattices (SL) can lead to localization of coherent phonons a...
Crystal phase engineering gives access to new types of periodic nanostructures, such as the so-calle...
Waste heat management and recovery and discovering energy-efficient devices are important problems t...
Promoting coherent transport of phonons at material interfaces is a promising strategy for controlli...
Periodic hole-array phononic crystals (PnCs) can strongly modify phonon dispersion relations and hav...
Solid-state energy conversion technologies such as thermoelectric and thermionic refrigeration and p...