English

Laser Amplification in Strongly-Magnetized Plasma

Plasma Physics 2019-07-17 v1

Abstract

We consider backscattering of laser pulses in strongly-magnetized plasma mediated by kinetic magnetohydrodynamic waves. Magnetized low-frequency scattering, which can occur when the external magnetic field is neither perpendicular nor parallel to the laser propagation direction, provides an instability growth rate higher than Raman scattering and a frequency downshift comparable to Brillouin scattering. In addition to the high growth rate, which allows smaller plasmas, and the 0.1-2\% frequency downshift, which permits a wide range of pump sources, MLF scattering is an ideal candidate for amplification because the process supports an extremely large bandwidth, which particle-in-cell simulations show produces ultrashort durations. Under some conditions, MLF scattering also becomes the dominant spontaneous backscatter instability, with implications for magnetized laser-confinement experiments.

Keywords

Cite

@article{arxiv.1812.09429,
  title  = {Laser Amplification in Strongly-Magnetized Plasma},
  author = {Matthew R. Edwards and Yuan Shi and Julia M. Mikhailova and Nathaniel J. Fisch},
  journal= {arXiv preprint arXiv:1812.09429},
  year   = {2019}
}

Comments

7 pages, 4 figures

R2 v1 2026-06-23T06:54:16.579Z