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Two-Dimensional Thomson Scattering in Laser-Produced Plasmas

  • Haiping Zhang
  • , Jessica J. Pilgram
  • , Carmen G. Constantin
  • , Lucas Rovige
  • , Peter V. Heuer
  • , Sofiya Ghazaryan
  • , Marietta Kaloyan
  • , Robert S. Dorst
  • , Derek B. Schaeffer
  • , Christoph Niemann
  • University of California, Los Angeles
  • University of Rochester Laboratory for Laser Energetics

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

5 Citations (Scopus)

Résumé

We present two-dimensional (2D) optical Thomson scattering measurements of electron density and temperature in laser-produced plasmas. The novel instrument directly measures (Formula presented.) and (Formula presented.) in two dimensions over large spatial regions (cm (Formula presented.)) with sub-mm spatial resolution, by automatically translating the scattering volume while the plasma is produced repeatedly by irradiating a solid target with a high-repetition-rate laser beam (10 J, ∼10 (Formula presented.) W/cm (Formula presented.), 1 Hz). In this paper, we describe the design and motorized auto-alignment of the instrument and the computerized algorithm that autonomously fits the spectral distribution function to the tens-of-thousands of measured scattering spectra, and captures the transition from the collective to the non-collective regime with distance from the target. As an example, we present the first 2D scattering measurements in laser-driven shock waves in ambient nitrogen gas at a pressure of 0.13 mbar.

langue originaleAnglais
Numéro d'article25
journalInstruments
Volume7
Numéro de publication3
Les DOIs
étatPublié - 1 sept. 2023
Modification externeOui

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