Lattice heat conduction can be modulated via nanostructure interfaces. Although advances have been made by viewing phonons as particles, the controllability should be enhanced by fully utilizing their wave nature. By considering phonons as coherent waves, herein we design an optimized aperiodic superlattice that minimizes the coherent phonon heat conduction by alternatingly coupling coherent phonon transport calculations and machine learning. The thermal conductivity of the fabricated aperiodic superlattice agrees well with the calculations over a temperature range of 77–300 K, indicating that complex aperiodic wave interference of coherent phonons can be controlled. The thermal conductivity of the aperiodic superlattice is significantly sm...
International audienceWe introduce and model a three-dimensional (3D) atomic-scale phononic metamate...
The concept of coherence is one of the fundamental phenomena in electronics and optics. In addition ...
Accessing the regime of coherent phonon propagation in nanostructures opens enormous possibilities t...
Coherent phonon heat conduction has recently been confirmed experimentally in superlattice structure...
| openaire: EC/H2020/645241/EU//TransFlexTegWe show that aperiodic superlattices exhibit intriguing ...
Phononic crystals are the acoustic analogs of photonic crystals and aim at manipulating phonon trans...
The control of heat conduction through the manipulation of phonons as coherent waves in solids is of...
Abstract. Controlling thermal transport has become relevant in recent years. Traditionally, this con...
International audienceThrough nonequilibrium molecular dynamics simulations, we report the direct nu...
International audienceThe world communicates to our senses of vision, hearing, and touch in the lang...
International audienceWe report a theoretical investigation of coherent-to-incoherent heat conductio...
International audienceThe value measured in the amorphous structure with the same chemical compositi...
International audienceNano-phononic crystals have attracted a great deal of research interest in the...
Randomizing the layer thickness of superlattices (SL) can lead to localization of coherent phonons a...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
International audienceWe introduce and model a three-dimensional (3D) atomic-scale phononic metamate...
The concept of coherence is one of the fundamental phenomena in electronics and optics. In addition ...
Accessing the regime of coherent phonon propagation in nanostructures opens enormous possibilities t...
Coherent phonon heat conduction has recently been confirmed experimentally in superlattice structure...
| openaire: EC/H2020/645241/EU//TransFlexTegWe show that aperiodic superlattices exhibit intriguing ...
Phononic crystals are the acoustic analogs of photonic crystals and aim at manipulating phonon trans...
The control of heat conduction through the manipulation of phonons as coherent waves in solids is of...
Abstract. Controlling thermal transport has become relevant in recent years. Traditionally, this con...
International audienceThrough nonequilibrium molecular dynamics simulations, we report the direct nu...
International audienceThe world communicates to our senses of vision, hearing, and touch in the lang...
International audienceWe report a theoretical investigation of coherent-to-incoherent heat conductio...
International audienceThe value measured in the amorphous structure with the same chemical compositi...
International audienceNano-phononic crystals have attracted a great deal of research interest in the...
Randomizing the layer thickness of superlattices (SL) can lead to localization of coherent phonons a...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2015.Ca...
International audienceWe introduce and model a three-dimensional (3D) atomic-scale phononic metamate...
The concept of coherence is one of the fundamental phenomena in electronics and optics. In addition ...
Accessing the regime of coherent phonon propagation in nanostructures opens enormous possibilities t...