• DocumentCode
    1329352
  • Title

    Matter–Antimatter Relativistic Ambiplasma Pinch

  • Author

    Winterberg, F.

  • Author_Institution
    Univ. of Nevada, Reno, NV, USA
  • Volume
    40
  • Issue
    12
  • fYear
    2012
  • Firstpage
    3303
  • Lastpage
    3307
  • Abstract
    An ambiplasma is a plasma made from matter and antimatter. We study here the property of such plasma at relativistic energy, which is made of counterstreaming electron and positron beams, and its extension to a hydrogen-antihydrogen ambiplasma pinch configuration, where the pinch current is made up from counterstreaming electrons and positrons at relativistic energy. Being very much as intense as relativistic electron beams, which are largely immune against the classical pinch instabilities, the same can hopefully be expected for the counterstreaming relativistic electron and positron beams. By radiation cooling, such electron-positron ambiplasma can collapse to a very small diameter, which, in the limit, is determined by Heisenberg´s uncertainty principle, reaching enormous densities. Because the counterstreaming electrons and positrons move at relativistic energy, their cross section for mutual annihilation is substantially reduced, making the lifetime of this ambiplasma large in comparison with the pinch implosion time. In a similar way, one can obtain a proton-antiproton ambiplasma pinch with two counterstreaming intense multigigaelectronvolt proton and antiproton beams. To overcome the technical problem to create such beams, as an easier way, one may consider a hydrogen-antihydrogen ambiplasma pinch where only the electrons and positrons carry the current. The current is produced by electron-positron runaway through the application of a high voltage pulse from a super Marx generator.
  • Keywords
    antimatter; electron beams; explosions; indeterminancy; pinch effect; relativistic plasmas; Heisenberg uncertainty principle; electron-positron ambiplasma; electron-positron runaway; high voltage pulse; hydrogen-antihydrogen ambiplasma pinch configuration; matter-antimatter relativistic ambiplasma pinch; mutual annihilation; pinch current; pinch implosion time; radiation cooling; relativistic electron beams; relativistic positron beams; superMarx generator; Plasma confinement; Plasma sources; Plasmas; Plasma confinement; plasma sources;
  • fLanguage
    English
  • Journal_Title
    Plasma Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0093-3813
  • Type

    jour

  • DOI
    10.1109/TPS.2012.2220785
  • Filename
    6341853