We study the vibrational behavior of silicon membranes with a thickness of a few hundred nanometers and macroscopic lateral size. A piezo is used to couple in transverse vibrations, which we monitor with a phase-shift interferometer using stroboscopic light. The observed wave pattern of the membrane deflection is a superposition of the mode corresponding to the excitation frequency and several higher harmonics. Using a Fourier transformation in time, we separate these contributions and image up to the eighth harmonic of the excitation frequency. With this method we determine the dispersion relation of membrane oscillations in a frequency range up to 12 MHz. We develop a simple analytical model combining stress of a membrane and bending of a...
We report the changes in dispersion relations of hypersonic acoustic phonons in free-standing silico...
We report the changes in dispersion relations of hypersonic acoustic phonons in free-standing silico...
We study the vibrational motion of mechanical resonators under strong drive in the strongly nonlinea...
We report the changes in dispersion relations of hypersonic acoustic phonons in free-standing silico...
We report the changes in dispersion relations of hypersonic acoustic phonons in free-standing silico...
Content from this work may be used under the terms of the Creative Commons Attribution 3.0 licence.W...
Nanomechanical membrane resonators are extensively used in a variety of applications due to their hi...
Nanomechanical membrane resonators are extensively used in a variety of applications due to their hi...
The acoustic phonon dispersion curves of ~10 and ~30 nm Si membranes were measured using Brillouin L...
We report on stress induced changes in the dispersion relations of acoustic phonons propagating in 2...
We report on stress induced changes in the dispersion relations of acoustic phonons propagating in 2...
We report on stress induced changes in the dispersion relations of acoustic phonons propagating in 2...
We present an experimental study of the bending waves of freestanding Si3N4 nanomembranes using opti...
We report measurements of vibrational mode shapes of mechanical resonators made from ultrathin carbo...
Photoacoustic (PA) amplitude and phase spectra vs the modulation frequency of the excitation optical...
We report the changes in dispersion relations of hypersonic acoustic phonons in free-standing silico...
We report the changes in dispersion relations of hypersonic acoustic phonons in free-standing silico...
We study the vibrational motion of mechanical resonators under strong drive in the strongly nonlinea...
We report the changes in dispersion relations of hypersonic acoustic phonons in free-standing silico...
We report the changes in dispersion relations of hypersonic acoustic phonons in free-standing silico...
Content from this work may be used under the terms of the Creative Commons Attribution 3.0 licence.W...
Nanomechanical membrane resonators are extensively used in a variety of applications due to their hi...
Nanomechanical membrane resonators are extensively used in a variety of applications due to their hi...
The acoustic phonon dispersion curves of ~10 and ~30 nm Si membranes were measured using Brillouin L...
We report on stress induced changes in the dispersion relations of acoustic phonons propagating in 2...
We report on stress induced changes in the dispersion relations of acoustic phonons propagating in 2...
We report on stress induced changes in the dispersion relations of acoustic phonons propagating in 2...
We present an experimental study of the bending waves of freestanding Si3N4 nanomembranes using opti...
We report measurements of vibrational mode shapes of mechanical resonators made from ultrathin carbo...
Photoacoustic (PA) amplitude and phase spectra vs the modulation frequency of the excitation optical...
We report the changes in dispersion relations of hypersonic acoustic phonons in free-standing silico...
We report the changes in dispersion relations of hypersonic acoustic phonons in free-standing silico...
We study the vibrational motion of mechanical resonators under strong drive in the strongly nonlinea...