English

Inflationary stimulated Raman scattering in shock-ignition plasmas

Plasma Physics 2020-11-25 v1

Abstract

In the shock-ignition inertial confinement fusion scheme, high-intensity lasers propagate through an inhomogeneous coronal plasma, driving a shock designed to cause fuel ignition. During the high-intensity ignitor laser pulse, SRS backscatter in the long scale-length coronal plasma is likely to be in the kinetic regime. In this work, we use one-dimensional particle-in-cell simulations to show that there is a non-linear frequency shift caused by kinetic effects, resulting in the growth of Stimulated Raman Scattering (SRS) in an inhomogeneous plasma far exceeding the predictions of the fluid theory, so-called inflationary SRS or iSRS. We find that iSRS occurs over a wide range of density scale-lengths relevant to shock-ignition and other directly-driven inertial confinement fusion schemes. The presence of iSRS in shock-ignition plasmas has implications for the theoretical gains from shock-ignition inertial confinement fusion. Here we quantify the intensity threshold for the onset of iSRS for shock-ignition relevant parameters.

Keywords

Cite

@article{arxiv.2011.12002,
  title  = {Inflationary stimulated Raman scattering in shock-ignition plasmas},
  author = {SJ Spencer and Alexander Seaton and Tom Goffrey and Tony Arber},
  journal= {arXiv preprint arXiv:2011.12002},
  year   = {2020}
}

Comments

9 pages, 7 figures