English

Two-dimensional Thomson scattering in high-repetition-rate laser-plasma experiments

Instrumentation and Detectors 2023-09-12 v1 Plasma Physics

Abstract

We present the first two-dimensional (2D) optical Thomson scattering measurements of electron density and temperature in laser-produced plasmas. The novel instrument directly measures ne(x,y)n_e(x,y) and Te(x,y)T_e(x,y) in two dimensions over large spatial regions (cm2^2) 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, \sim1012^{12} W/cm2^2, 1 Hz). In this paper, we describe the design and auto-alignment of the instrument, and the computerized fitting algorithm of the spectral distribution function to large data-sets of measured scattering spectra, as they transition from the collective to the non-collective regime with distance from the target. As an example, we present 2D scattering measurements in laser driven shock waves in ambient nitrogen gas at a pressure of 95 mTorr.

Keywords

Cite

@article{arxiv.2305.07843,
  title  = {Two-dimensional Thomson scattering in high-repetition-rate laser-plasma experiments},
  author = {H. Zhang and J. J. Pilgram and C. G. Constantin and L. Rovige and P. V. Heuer and S. Ghazaryan and M. Kaloyan and R. S. Dorst and D. B. Schaeffer and C. Niemann},
  journal= {arXiv preprint arXiv:2305.07843},
  year   = {2023}
}

Comments

8 pages, 4 figures

R2 v1 2026-06-28T10:33:34.129Z