Nanophononics: state of the art and perspectives

被引:0
|
作者
Sebastian Volz
Jose Ordonez-Miranda
Andrey Shchepetov
Mika Prunnila
Jouni Ahopelto
Thomas Pezeril
Gwenaelle Vaudel
Vitaly Gusev
Pascal Ruello
Eva M. Weig
Martin Schubert
Mike Hettich
Martin Grossman
Thomas Dekorsy
Francesc Alzina
Bartlomiej Graczykowski
Emigdio Chavez-Angel
J. Sebastian Reparaz
Markus R. Wagner
Clivia M. Sotomayor-Torres
Shiyun Xiong
Sanghamitra Neogi
Davide Donadio
机构
[1] Laboratoire d’Energétique Moléculaire et Macroscopique,Department of Physics
[2] Combustion,Department of Aerospace Engineering Sciences
[3] CNRS,Department of Chemistry
[4] VTT Technical Research Centre of Finland,undefined
[5] P.O. Box 1000,undefined
[6] 02044 VTT,undefined
[7] Institut des Molécules et Matériaux du Mans,undefined
[8] UMR CNRS 6283,undefined
[9] Université du Maine,undefined
[10] Laboratoire d’Acoustique,undefined
[11] UMR CNRS 6613,undefined
[12] Université du Maine,undefined
[13] University of Konstanz,undefined
[14] Universitätsstr. 10,undefined
[15] Catalan Institute of Nanoscience and Nanotechnology (ICN2),undefined
[16] CSIC and The Barcelona Institute of Science and Technology,undefined
[17] ICREA,undefined
[18] Catalan Institute for Research and Advanced Studies,undefined
[19] Max Planck Institute for Polymer Research,undefined
[20] University of Colorado Boulder,undefined
[21] University of California Davis,undefined
[22] Ikerbasque,undefined
[23] Basque Foundation for Science,undefined
[24] Donostia International Physics Center,undefined
[25] Paseo M. de Lardizabal 4,undefined
来源
The European Physical Journal B | 2016年 / 89卷
关键词
Mesoscopic and Nanoscale Systems;
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中图分类号
学科分类号
摘要
Understanding and controlling vibrations in condensed matter is emerging as an essential necessity both at fundamental level and for the development of a broad variety of technological applications. Intelligent design of the band structure and transport properties of phonons at the nanoscale and of their interactions with electrons and photons impact the efficiency of nanoelectronic systems and thermoelectric materials, permit the exploration of quantum phenomena with micro- and nanoscale resonators, and provide new tools for spectroscopy and imaging. In this colloquium we assess the state of the art of nanophononics, describing the recent achievements and the open challenges in nanoscale heat transport, coherent phonon generation and exploitation, and in nano- and optomechanics. We also underline the links among the diverse communities involved in the study of nanoscale phonons, pointing out the common goals and opportunities.
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