International audienceWe demonstrate the existence of a coherent transport of thermal energy in superlattices by introducing a microscopic definition of the phonon coherence length. A criterion is provided to distinguish the coherent transport regime from diffuse interface scattering and discuss how these can be specifically controlled by several physical parameters. Our approach provides a convenient framework for the interpretation of previous thermal conductivity measurements and calculations; it also paves the way for the design of a new class of thermal interface materials
Randomizing the layer thickness of superlattices (SL) can lead to localization of coherent phonons a...
As a fundamental physical quantity of thermal phonons, temporal coherence participates in a broad ra...
International audienceNano-phononic crystals have attracted a great deal of research interest in the...
International audienceWe demonstrate the existence of a coherent transport of thermal energy in supe...
The concept of coherence is one of the fundamental phenomena in electronics and optics. In addition ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
International audienceWe report a theoretical investigation of coherent-to-incoherent heat conductio...
Coherent phonon heat conduction has recently been confirmed experimentally in superlattice structure...
Promoting coherent transport of phonons at material interfaces is a promising strategy for controlli...
The control of heat conduction through the manipulation of phonons as coherent waves in solids is of...
Nanoscale thermal transport has attracted considerable attention because of both funda-mental scient...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2012.Cataloge...
Heat conduction mechanisms in superlattices could be different across different types of interfaces....
International audienceCoherent phonon transport is regarded as a promising strategy for controlling ...
4 pages, 3 figuresInternational audienceAs a fundamental physical quantity of thermal phonons, tempo...
Randomizing the layer thickness of superlattices (SL) can lead to localization of coherent phonons a...
As a fundamental physical quantity of thermal phonons, temporal coherence participates in a broad ra...
International audienceNano-phononic crystals have attracted a great deal of research interest in the...
International audienceWe demonstrate the existence of a coherent transport of thermal energy in supe...
The concept of coherence is one of the fundamental phenomena in electronics and optics. In addition ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
International audienceWe report a theoretical investigation of coherent-to-incoherent heat conductio...
Coherent phonon heat conduction has recently been confirmed experimentally in superlattice structure...
Promoting coherent transport of phonons at material interfaces is a promising strategy for controlli...
The control of heat conduction through the manipulation of phonons as coherent waves in solids is of...
Nanoscale thermal transport has attracted considerable attention because of both funda-mental scient...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Mechanical Engineering, 2012.Cataloge...
Heat conduction mechanisms in superlattices could be different across different types of interfaces....
International audienceCoherent phonon transport is regarded as a promising strategy for controlling ...
4 pages, 3 figuresInternational audienceAs a fundamental physical quantity of thermal phonons, tempo...
Randomizing the layer thickness of superlattices (SL) can lead to localization of coherent phonons a...
As a fundamental physical quantity of thermal phonons, temporal coherence participates in a broad ra...
International audienceNano-phononic crystals have attracted a great deal of research interest in the...