English

Magnetic stagnation of two counterstreaming plasma jets induced by intense laser

Plasma Physics 2025-06-23 v1

Abstract

Experiments with interacting high-velocity flows of laser plasma can help answer the fundamental questions in plasma physics and improve the understanding of the mechanisms behind astrophysical phenomena, such as formation of collisionless shock waves, deceleration of accretion flows, and evolution of solar (stellar) flares. This work presents the first direct experimental observations of stagnation and redirection of counterstreaming flows (jets) of laser plasma induced by ultra-intense laser pulses with intensity II \sim 2 ×\times 101810^{18} W/cm2W/cm^2. Hybrid (PIC - fluid) modeling, which takes into account the kinetic effects of ion motion and the evolution of the pressure tensor for electrons, demonstrates the compression of counterdirected toroidal self-generated magnetic fields embedded in the counterstreaming plasma flows. The enhancement of the toroidal magnetic field in the interaction region results in plasma flow stagnation and redirection of the jets across the line of their initial propagation.

Keywords

Cite

@article{arxiv.2506.16069,
  title  = {Magnetic stagnation of two counterstreaming plasma jets induced by intense laser},
  author = {R. S. Zemskov and S. E. Perevalov and A. V. Kotov and A. A. Murzanev and A. I. Korytin and K. F. Burdonov and V. N. Ginzburg and A. A. Kochetkov and S. E. Stukachev and I. V. Yakovlev and I. A. Shaikin and A. A. Kuzmin and E. V. Derishev and A. V. Korzhimanov and A. A. Soloviev and A. A. Shaykin and A. N. Stepanov and M. V. Starodubtsev and E. A. Khazanov},
  journal= {arXiv preprint arXiv:2506.16069},
  year   = {2025}
}

Comments

10 pages, 6 figures