• Title of article

    New exact solutions of the Dirac and Klein–Gordon equations of a charged particle propagating in a strong laser field in an underdense plasma

  • Author/Authors

    Sebastian K.G. and Varrَ، نويسنده , , Sلndor، نويسنده ,

  • Pages
    4
  • From page
    280
  • To page
    283
  • Abstract
    Exact solutions are presented of the Dirac and Klein–Gordon equations of a charged particle propagating in a classical monochromatic electromagnetic plane wave in a medium of index of refraction nm<1. In the Dirac case the solutions are expressed in terms of new complex polynomials, and in the Klein–Gordon case the found solutions are expressed in terms of Ince polynomials. In each case they form a doubly infinite set, labeled by two integer quantum numbers. These integer numbers represent quantized momentum components of the charged particle along the polarization vector and along the propagation direction of the electromagnetic radiation. Since this radiation may represent a plasmon wave of arbitrary high amplitude, propagating in an underdense plasma, the solutions obtained may have relevance in describing possible quantum features of novel acceleration mechanisms.
  • Keywords
    Strong laser field-matter interactions , Volkov states , Klein–Gordon equation , Dirac equation , Laser acceleration of particles
  • Journal title
    Astroparticle Physics
  • Record number

    2011684