The concept of coherence is one of the fundamental phenomena in electronics and optics. In addition to electron and photon, phonon is another important energy and information carrier in nature. Without any doubt, exploration of the phonon coherence and its impact on thermal conduction will markedly change many aspects in broad applications for heat control and management in the real world. So far, the application of coherent effect on manipulation of phonon transport is a challenging work. In this article, we review recent advances in the study of the phonon coherent transport in nanomaterials and nanostructures. We first briefly look back the classical and quantum theory of coherence. Next, we review the progresses made in the understandin...
Application of nano-structures requires a knowledge of their fundamental physical (mechanical, elect...
Phononic crystals are the acoustic analogs of photonic crystals and aim at manipulating phonon trans...
Phonon surface scattering has been at the core of heat transport engineering in nanoscale devices. H...
International audienceWe report a theoretical investigation of coherent-to-incoherent heat conductio...
4 pages, 3 figuresInternational audienceAs a fundamental physical quantity of thermal phonons, tempo...
International audienceWe demonstrate the existence of a coherent transport of thermal energy in supe...
As a fundamental physical quantity of thermal phonons, temporal coherence participates in a broad ra...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
Phonons can display both wave-like and particle-like behaviour during thermal transport. While therm...
Nanoscale thermal transport has attracted considerable attention because of both funda-mental scient...
International audienceThrough nonequilibrium molecular dynamics simulations, we report the direct nu...
International audienceNano-phononic crystals have attracted a great deal of research interest in the...
Energy transport at the nanoscale involves different types of carriers - phonon, electron and photon...
Coherent phonon transport is regarded as a promising strategy for controlling thermal properties in ...
Promoting coherent transport of phonons at material interfaces is a promising strategy for controlli...
Application of nano-structures requires a knowledge of their fundamental physical (mechanical, elect...
Phononic crystals are the acoustic analogs of photonic crystals and aim at manipulating phonon trans...
Phonon surface scattering has been at the core of heat transport engineering in nanoscale devices. H...
International audienceWe report a theoretical investigation of coherent-to-incoherent heat conductio...
4 pages, 3 figuresInternational audienceAs a fundamental physical quantity of thermal phonons, tempo...
International audienceWe demonstrate the existence of a coherent transport of thermal energy in supe...
As a fundamental physical quantity of thermal phonons, temporal coherence participates in a broad ra...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
Phonons can display both wave-like and particle-like behaviour during thermal transport. While therm...
Nanoscale thermal transport has attracted considerable attention because of both funda-mental scient...
International audienceThrough nonequilibrium molecular dynamics simulations, we report the direct nu...
International audienceNano-phononic crystals have attracted a great deal of research interest in the...
Energy transport at the nanoscale involves different types of carriers - phonon, electron and photon...
Coherent phonon transport is regarded as a promising strategy for controlling thermal properties in ...
Promoting coherent transport of phonons at material interfaces is a promising strategy for controlli...
Application of nano-structures requires a knowledge of their fundamental physical (mechanical, elect...
Phononic crystals are the acoustic analogs of photonic crystals and aim at manipulating phonon trans...
Phonon surface scattering has been at the core of heat transport engineering in nanoscale devices. H...