Electron density structure measurements with scattered intense laser beam
Abstract
Short-pulse intense lasers have the potential to model extreme astrophysical environments in laboratories. Although there are diagnostics for energetic electrons and ions resulting from laser-plasma interactions, the diagnostics to measure velocity distribution functions at the interaction region of laser and plasma are limited. We have been developing the diagnostics of the interaction between intense laser and plasma using scattered intense laser. We performed experiments to measure electron density by observing the spatial distributions and ratio of horizontal to vertical polarization components of scattered laser beam using optical imaging. The observed ratio of polarization components is consistent with the drive laser beam indicating the observed light originates from the drive laser. Imaging of the scattered light shows the structure of electron density, the zeros moment of electron velocity distribution function, interacting with the intense laser. We observed the change of structure due to the laser pre-pulse that destroys the target before the arrival of the main pulse.
Cite
@article{arxiv.2505.08711,
title = {Electron density structure measurements with scattered intense laser beam},
author = {K. Sakai and K. Himeno and S. J. Tanaka and T. Asai and T. Minami and Y. Abe and F. Nikaido and K. Kuramoto and M. Kanasaki and H. Kiriyama and A. Kon and K. Kondo and N. Nakanii and W. Y. Woon and C. M. Chu and K. T. Wu and C. S. Jao and Y. L. Liu and T. A. Pikuz and H. Kohri and A. O. Tokiyasu and S. Isayama and H. S. Kumar and K. Tomita and Y. Fukuda and Y. Kuramitsu},
journal= {arXiv preprint arXiv:2505.08711},
year = {2025}
}
Comments
12 pages, 8 figures, Contrib. Plasma Phys., in press