Time-resolved broadband impulsive stimulated Brillouin scattering in single crystal hematite

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Abstract

Impulsive stimulated Brillouin scattering (ISBS) has emerged as a noninvasive means to determine the elastic properties of transparent materials. Here, we report on time-resolved broadband ISBS reflectivity measurements in single crystal hematite, com.elsevier.xml.ani.Math@2f7d3756-Fe2O3. We found that the observed transient reflectivity changes are best described by the known strain propagation model (SPM) and introduced a simple derivation of the ISBS-SPM formula based on ray tracing, which accounts for the presence of the interface. Measurements at different incident probe beam angles illustrate a plausible approach toward determining the speed of sound in transparent media without any prior knowledge of their dielectric properties and vice versa.

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Gicala, P., Cheng, M., Lott, T. S., Du, K., Cheong, S. W., Petruk, A. A., … Sciaini, G. (2021). Time-resolved broadband impulsive stimulated Brillouin scattering in single crystal hematite. Applied Physics Letters, 118(26). https://doi.org/10.1063/5.0057604

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