English

Travelling waves and light-front approach in relativistic electrodynamics

Plasma Physics 2018-07-03 v1 Classical Physics

Abstract

We briefly report on a recent proposal (Fiore in J Phys A Math Theor 51:085203, 2018) for simplifying the equations of motion of charged particles in an electromagnetic (EM) field FμνF^{\mu\nu} that is the sum of a plane travelling wave Ftμν(ct ⁣ ⁣z)F_t^{\mu\nu}(ct\!-\!z) and a static part Fsμν(x,y,z)F_s^{\mu\nu}(x,y,z); it adopts the light-like coordinate ξ=ct ⁣ ⁣z\xi=ct\!-\!z instead of time tt as an independent variable. We illustrate it in a few cases of extreme acceleration, first of an isolated particle, then of electrons in a plasma in plane hydrodynamic conditions: the Lorentz-Maxwell \& continuity PDEs can be simplified or sometimes even completely reduced to a family of decoupled systems of ordinary ones; this occurs e.g. with the impact of the travelling wave on a vacuum-plasma interface (what may produce plasma waves or the slingshot effect).

Keywords

Cite

@article{arxiv.1807.00667,
  title  = {Travelling waves and light-front approach in relativistic electrodynamics},
  author = {Gaetano Fiore and Paolo Catelan},
  journal= {arXiv preprint arXiv:1807.00667},
  year   = {2018}
}

Comments

Latex file, 17 pages, 6 figures. To appear in Ricerche di Matematica