Advances in applications of time-domain Brillouin scattering for nanoscale imaging

VE Gusev, P Ruello - Applied Physics Reviews, 2018 - pubs.aip.org
Time-domain Brillouin scattering is an all-optical experimental technique based on ultrafast
lasers applied for generation and detection of coherent acoustic pulses on time durations of …

[HTML][HTML] Time-domain Brillouin scattering for evaluation of materials interface inclination: Application to photoacoustic imaging of crystal destruction upon non …

S Sandeep, S Raetz, N Chigarev, N Pajusco, T Thréard… - Photoacoustics, 2023 - Elsevier
Time-domain Brillouin scattering (TDBS) is a developing technique for imaging/evaluation of
materials, currently used in material science and biology. Three-dimensional imaging and …

Longitudinal sound velocities, elastic anisotropy, and phase transition of high-pressure cubic ice to 82 GPa

M Kuriakose, S Raetz, QM Hu, SM Nikitin, N Chigarev… - Physical Review B, 2017 - APS
Water ice is a molecular solid whose behavior under compression reveals the interplay of
covalent bonding in molecules and forces acting between them. This interplay determines …

3D characterization of individual grains of coexisting high-pressure H2O ice phases by time-domain Brillouin scattering

S Sandeep, T Thréard, E de Lima Savi… - Journal of Applied …, 2021 - pubs.aip.org
Time-domain Brillouin scattering (TDBS) uses ultrashort laser pulses to (i) generate
coherent acoustic pulses of picoseconds duration in a solid sample and (ii) follow their …

Sound Velocity Anisotropy and Single‐Crystal Elastic Moduli of MgO to 43 GPa

X Zhang, C Li, F Xu, J Zhang, C Gao… - Journal of …, 2023 - Wiley Online Library
Seismic anisotropy in the Earth's lower mantle likely results from a combination of elastic
anisotropy and lattice preferred orientations of its main constituent minerals. As the second …

Ab initio determination of crystal stability of di-p-tolyl disulfide

X Hao, J Liu, I Ali, H Luo, Y Han, W Hu, J Liu, X He… - Scientific Reports, 2021 - nature.com
With the rapid growth of energy demand and the depletion of existing energy resources, the
new materials with superior performances, low costs and environmental friendliness for …

Evaluation of the Structural Phase Transition in Multiferroic (Bi1−x Prx)(Fe0.95 Mn0.05)O3 Thin Films by A Multi-Technique Approach Including Picosecond Laser …

S Raetz, A Lomonosov, S Avanesyan, N Chigarev… - Applied Sciences, 2019 - mdpi.com
Featured Application Evaluation of the elastic and optical parameters of any sub-micrometer-
thick transparent inhomogeneous films. In the case of doped multiferroic materials, the …

Zero-group-velocity Lamb modes in laser ultrasonics: fatigue monitoring and material characterization

G Yan - 2018 - theses.hal.science
In recent years, zero-group-velocity (ZGV) Lamb modes have proven to be an efficient tool to
probe locally and very accurately the thickness of a sample or the mechanical properties of …

Light-motion interaction in disordered nanostructures

G Arregui Bravo - 2021 - ddd.uab.cat
La interacció de la llum confinada en una cavitat òptica amb els graus de llibertat mecànics
de la matèria en els sistemes optomecànics permet la investigació fonamental en física …

Development of opto-acousto-optical methods for three dimensional material imaging with nano-acoustic longitudinal and transversal waves

T Thréard - 2021 - theses.hal.science
Imaging techniques, used to probe material properties at the nanometric scale, have been
developed for many years in the aim of providing tools for the diagnostics in the material and …