Bulletin of the American Physical Society
65th Annual Meeting of the APS Division of Plasma Physics
Monday–Friday, October 30–November 3 2023; Denver, Colorado
Session CP11: Poster Session II:
Machine learning in fundamental, low temperature, HED, and beams
Science Education, Public Engagement and DEI
High School
Undergraduate
2:00 PM - 5:00 PM
Monday, October 30, 2023
Room: Plaza ABC
Abstract: CP11.00061 : Machine learning analysis of high-repetition rate 2-dimensional Thomson scattering spectra from laser-plasmas
Presenter:
Sam Eisenbach
(UCLA)
Authors:
Sam Eisenbach
(UCLA)
Derek Mariscal
(Lawrence Livermore Natl Lab)
Derek B Schaeffer
(University of California, Los Angeles)
Haiping Zhang
(University of California, Los Angeles)
Jessica J Pilgram
(University of California, Los Angeles)
Carmen G Constantin
(University of California, Los Angeles)
Lucas Rovige
(University of California, Los Angeles)
Peter V Heuer
(Laboratory for Laser Energetics)
Sophia Ghazaryan
(University of California, Los Angeles)
Marietta Kaloyan
(University of California, Los Angeles)
Robert S Dorst
(University of California, Los Angeles)
Christoph Niemann
(University of California, Los Angeles)
With the emergence of high-repetition rate two-dimensional Thomson scattering (TS) measurements, improving data analysis is a key area of interest. We present a new way to analyze the temperature and density of laser-driven blast waves in plasmas from their TS spectra with machine learning (ML). This analysis occurs in both the collective (α << 1) and non-collective (α > 1) regimes with the goal of more accurately determining Te and ne both where spectral data has been collected and to give the ability to predict these attributes in regions where data has not been collected. We compare both the speed and accuracy of the ML model with the conventional TS inversion algorithms in the open source PlasmaPy python package.
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