Phonons can display both wave-like and particle-like behaviour during thermal transport. While thermal transport in silicon nanomeshes has been previously interpreted by phonon wave effects due to interference with periodic structures, as well as phonon particle effects including backscattering, the dominant mechanism responsible for thermal conductivity reductions below classical predictions still remains unclear. Here we isolate the wave-related coherence effects by comparing periodic and aperiodic nanomeshes, and quantify the backscattering effect by comparing variable-pitch nanomeshes. We measure identical (within 6% uncertainty) thermal conductivities for periodic and aperiodic nanomeshes of the same average pitch, and reduced thermal ...
When the size of semiconductors is smaller than the phonon mean free path, phonons can carry heat wi...
We present a kinetic model to investigate the anomalous thermal conductivity in silicon nanowires (S...
When the size of semiconductors is smaller than the phonon mean free path, phonons can carry heat wi...
The thermal conductivity (k) of a semiconducting nanostructure is dramatically reduced from the bulk...
Phonons are the primary carriers of heat in dielectric solids. In the limit of long wavelength, phon...
Artificial periodic nanostructures, known as phononic crystals, promise to control the thermal prope...
The concept of coherence is one of the fundamental phenomena in electronics and optics. In addition ...
International audienceUnderstanding how thermal-phonon paths can be shaped is key for controlling he...
Recent experiments have demonstrated that thermal properties of semiconductor nanostructures depend ...
Diffusive phonon transport in nanostructured materials has been a subject of intense interest and mi...
Recent experiments have demonstrated that thermal properties of semiconductor nanostructures depend ...
We present an analytical model and molecular-dynamics simulations of the phonon heat transport in na...
The ability to minimize the thermal conductivity of dielectrics with minimal structural intervention...
Understanding electron and phonon transport in silicon nanostructures is essential for developing ad...
The specularity of phonons at crystal surfaces is of direct importance to thermal transport in nanos...
When the size of semiconductors is smaller than the phonon mean free path, phonons can carry heat wi...
We present a kinetic model to investigate the anomalous thermal conductivity in silicon nanowires (S...
When the size of semiconductors is smaller than the phonon mean free path, phonons can carry heat wi...
The thermal conductivity (k) of a semiconducting nanostructure is dramatically reduced from the bulk...
Phonons are the primary carriers of heat in dielectric solids. In the limit of long wavelength, phon...
Artificial periodic nanostructures, known as phononic crystals, promise to control the thermal prope...
The concept of coherence is one of the fundamental phenomena in electronics and optics. In addition ...
International audienceUnderstanding how thermal-phonon paths can be shaped is key for controlling he...
Recent experiments have demonstrated that thermal properties of semiconductor nanostructures depend ...
Diffusive phonon transport in nanostructured materials has been a subject of intense interest and mi...
Recent experiments have demonstrated that thermal properties of semiconductor nanostructures depend ...
We present an analytical model and molecular-dynamics simulations of the phonon heat transport in na...
The ability to minimize the thermal conductivity of dielectrics with minimal structural intervention...
Understanding electron and phonon transport in silicon nanostructures is essential for developing ad...
The specularity of phonons at crystal surfaces is of direct importance to thermal transport in nanos...
When the size of semiconductors is smaller than the phonon mean free path, phonons can carry heat wi...
We present a kinetic model to investigate the anomalous thermal conductivity in silicon nanowires (S...
When the size of semiconductors is smaller than the phonon mean free path, phonons can carry heat wi...