Acoustics at nanoscale: Raman–Brillouin scattering from thin silicon-on-insulator layers
Author:
Publisher
AIP Publishing
Subject
Physics and Astronomy (miscellaneous)
Link
http://aip.scitation.org/doi/pdf/10.1063/1.3499309
Reference9 articles.
1. A different way of performing picosecond ultrasonic measurements in thin transparent films based on laser-wavelength effects
2. Complete thin film mechanical characterization using picosecond ultrasonics and nanostructured transducers: experimental demonstration on SiO2
3. Subterahertz monochromatic acoustic wave propagation using semiconductor superlattices as transducers
4. Nanophononic thin-film filters and mirrors studied by picosecond ultrasonics
5. Probing confined interfacial excitations in buried layers by Brillouin light scattering
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1. Optical study of electron and acoustic phonon confinement in ultrathin-body germanium-on-insulator nanolayers;Nanoscale;2021
2. Thickness-Dependent Phonon Renormalization and Enhanced Raman Scattering in Ultrathin Silicon Nanomembranes;Nano Letters;2017-11-20
3. Studying Thin Ge films and Ge/GeO2 interfaces by means of raman–brillouin scattering;Bulletin of the Russian Academy of Sciences: Physics;2015-11
4. Raman-Brillouin scattering from a thin Ge layer: Acoustic phonons for probing Ge/GeO2 interfaces;Applied Physics Letters;2014-02-10
5. Spectroscopic Ellipsometry of Nanoscale Materials for Semiconductor Device Applications;Ellipsometry at the Nanoscale;2013
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