Published June 1990 | Version v1
Journal article

Transient field behavior in an electromagnetic pulse from neutral-beam reflection

Creators

  • 1. Georgia Univ., Athens, GA (USA). Dept. of Physics

Description

A neutral beam of electrons and positrons catches up to an electromagnetic pulse moving in a medium with refractive index n. The neutral beam is reflected and deposits some of its energy in a current region in the tail of the pulse. The location, size, and shape of the transient-induced electric fields in the current region are modeled using current densities from uniform averaged fields. The electric field in the current region is predicted to rise linearly with time, with a doubling time determined by the beam parameters and the initial local electromagnetic field. A coordinate frame comoving with the pulse is used to determine the extent of and conditions within the current region. In this comoving frame the Lorentz-transformed electric field is zero, but there is an enhanced Lorentz-transformed magnetic field. The extent of the current region is found from the radius of the semicircular charged-particle orbits in the comoving frame

Additional details

Publishing Information

Journal Title
IEEE Transactions on Plasma Science
Journal Volume
18
Journal Issue
3
Series
IEEE Trans. Plasma Sci.
Journal Page Range
664-668
ISSN
0093-3813
CODEN
ITPSB