Abstract
We present results from an experiment carried out at the OMEGA-EP laser facility that investigated the effect of a perpendicular magnetic field on stimulated Raman scattering (SRS) and report the first direct measurement of magnetic mitigation of SRS. A 13-T magnetic field generated by pulsed-power coils was imposed on a gas jet plasma, and a novel three-picket interaction beam was used to explore SRS reflectivity for several plasma conditions within single shots. The time-resolved backscattered light shows that SRS was mitigated by the external 13-T magnetic field in the kinetic regime ( k λ D ∼ 0.3 , where k is the electron plasma wave's wavenumber and λ D is electron Debye length) and at a density of n e / n c r ∼ 0.10 . On the other hand, we also measured an enhancement of SRS reflectivity at lower density ( n e / n c r < 0.08 ). We discuss experimental results in the context of magnetohydrodynamic and particle-in-cell simulations that scan SRS dynamics for a variety of plasma conditions. While the experimental evidence of SRS mitigation validates prior work on the kinetic simulation of SRS in an external magnetic field, we also find that other mechanisms such as SRS rescatter can lead to an enhancement of measured SRS reflectivity in simulations of parameters relevant to our experiment.
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CITATION STYLE
Bolaños, S., Bailly-Grandvaux, M., Winjum, B. J., Manuel, M. J. E., Bogale, A., Filkins, T., … Beg, F. N. (2025). Direct evidence of the effect of a moderate external magnetic field on stimulated Raman scattering in the kinetic regime. Physics of Plasmas, 32(9). https://doi.org/10.1063/5.0277771
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