z-logo
open-access-imgOpen Access
A Transient Grating Method to Measure the Dispersion of Elastic Waves in Nanostructures
Author(s) -
Eric Charron,
Liwei Lu,
Bernard Bonello,
Olga Boyko,
Е. В. Глушков,
Natalia Glushkova,
Maria Tchernycheva,
N. Gogneau
Publication year - 2020
Publication title -
journal of physics. conference series
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.21
H-Index - 85
eISSN - 1742-6596
pISSN - 1742-6588
DOI - 10.1088/1742-6596/1461/1/012022
Subject(s) - materials science , grating , optics , dispersion (optics) , transient (computer programming) , interference (communication) , surface acoustic wave , vibration , guided wave testing , heterodyne detection , surface wave , laser , acoustics , optoelectronics , physics , telecommunications , channel (broadcasting) , computer science , operating system
We describe the so-called “ Transient Grating Method ” which is a non-invasive experimental technique well suited to measure the dispersion properties of ordered or disordered nanostructures and thin films, at frequencies up to a few GHz. This pump-and-probe technique involves the interference pattern produced by two in-coming IR optical pulses to set a standing elastic wave on the surface of the sample through photoelastic processes. The wave vector of this elastic wave can be easily tuned by adjusting the angle between the two incident beams. Two continuous visible laser beams in a heterodyne detection scheme are used to detect the vibrations on the surface and in turn the dispersion of the related elastic modes. The achievements of the technique are illustrated by the measurement of the dispersion of surface acoustic waves in piezogenerators consisting of GaN nanowires embedded into a dielectric matrix (HSQ). We then report on the analysis of the experimental data that allowed extracting the elastic parameters of this composite medium.

The content you want is available to Zendy users.

Already have an account? Click here to sign in.
Having issues? You can contact us here