Femtosecond-laser-pulse characterization and optimization for CARS microscopy
Abstract
We present a simple method and its experimental implementation to completely determine the characteristics of the pump-and-probe pulse and the Stokes pulse in a coherent anti-Stokes Raman scattering microscope at sample level without additional autocorrelators. Our approach exploits the delay line, ubiquitous in such microscopes, to perform a convolution of the pump-and-probe and Stokes pulses as a function of their relative delay and it is based on the detection of the photons emitted from an appropriate non-linear sample. The analysis of the non-resonant four-wave-mixing and sum-frequency-generation signals allows retrieving the pulse duration on the sample and the chirp of each pulse. This knowledge is crucial in maximizing the spectral-resolution and contrast in CARS imaging.
Cite
@article{arxiv.1601.06614,
title = {Femtosecond-laser-pulse characterization and optimization for CARS microscopy},
author = {Vincenzo Piazza and Giuseppe de Vito and Elmira Farrokhtakin and Gianni Ciofani and Virgilio Mattoli},
journal= {arXiv preprint arXiv:1601.06614},
year = {2020}
}