Documents / Report

Defense Intelligence Reference Document Inertial Electrostatic Confinement Fusion

Defense Intelligence Agency · 72 pages · text from the file's own layer

This Defense Intelligence Agency reference document, dated 10 March 2010, covers inertial electrostatic confinement (IEC) fusion. It was produced in FY 2009 under the DIA's Advanced Aerospace Weapon System Applications (AAWSA) program. The report focuses on work at the University of Illinois Urbana-Champaign and reviews IEC basics, experiments, theory and applications such as neutron sources, explosives detection and space propulsion. It concludes by proposing a breakeven experiment for p-11B fusion that uses a hydrogen plasma simulation.

  • p. 4 …54 Magnetically-Channeled Spherical IEC Array (MCSA) Concept ......................... 56 Recirculation of Radial Belt Cone Losses ...................................................... 57…
  • p. 9 …9FFlil.11k WEI! 8Hllf of various loss channels such as hitting the grid, charge exchange, or…
  • p. 19 …Other faint light channels indicate beams for scattering of the central core region. As seen, a…
  • p. 30 …In addition to maneuverable thrusting, the jet channel extraction technique enables directing and focusing the plasma…
  • p. 32 …The micro-channel formation in the STAR mode acts to maintain and store the accelerated ions…
  • p. 33 …A cylindrical "channel" grid with the same electrostatic potential as the central spherical grid creates a…
  • p. 38 …Using Doppler spectroscopy of the Hydrogen Ha line they have shown that the micro-channels in…
  • p. 39 …electric propulsion thruster where a unidirectional micro-channel emerges from a conical cathode (Reference 3.14…
  • p. 63 …MAGNETICALLY-CHANNELED SPHERICAL IEC ARRAY {MCSA} CONCEPT The Magnetically-Channeled Spherical IEC Array (MCSA) concept for…
  • p. 64 …retrapping, that provide the basis for magnet channel coupling. Recirculation of Radial Belt Cone Losses The…
  • p. 67 …Momota, "Magnetically-Channeled SIEC Array (MCSA) Fusion Device for Interplanetary Missions", Space Technology and Applications International…
UNCLASSIFIED/ ,<F9A: 9FFI~l.11k WE&i 9Hllf
Section I. IEC Background and Basics
Before considering detail, it is helpful to obtain a rough idea of how inertial electrostatic
confinement (IEC) fusion works.
Gas ~ccd
I in~
Spherical Vacuum
. Chamber
!!1~h-\'olta~c
FeeJlhrough
H,gh-Voltagc
Power Suppl}
To Vacuu
""·'
Figure 1.1. An UIUC Spherical IEC. The plasma discharge between the grid and vacuum wall creates an ion
source that is extracted and directed towards the center by the highly charged negative grid. A photograph of a
typical !EC chamber is shown in the center. A photograph of the discharge through the view port shows the "Star
Mode" discharge where ion beams are created that pass through the grid openings. This is important for long run
times since 10n bombardment of the grids, hence grid wire sputtering, is m1nim1zed.
For this purpose the experimental IEC device of Figure 1.1 is considered. As shown, this
"gridded" type IEC has a spherical mesh grid suspended on a high voltage feed-through
in the center of a metal vacuum vessel. The fusion "fuel", e.g. deuterium gas, is first
fed into the chamber originally prepared at high vacuum, e.g. 10- 7 Torr. The fuel gas
brings the pressure up into the 10's of Torr region. Then the voltage on the grid is
raised into the many (-) kV range, creating a plasma discharge between the high
voltage grid and chamber wall (electrically grounded). The high negative voltage on the
grid serves to extract the ion from the plasma, accelerating them towards the center of
the grid where in principle they interact and fuse. In practice however, the scattering
cross section is larger than the fusion cross section. Thus many ions scatter without
reacting (fusing). Many "near misses" essentially pass straight through the center of the
plasma core and exit. This dominance of scattering over fusion reactions is the central
issue of all fusion confinement approaches, forcing use of strong confinement so the
ions have many passes and hence a good probability of fusing before being lost from
the fusion reaction chamber. In the IEC multiple passes occur because the ions are
trapped in a potential "well" created by the buildup of positive charge due to the large
flow of the accelerated ions into a small "core" region in the center of the negative grid.
Viewed in another way, the ions extracted from the region between the grid and the
wall can scatter and pass back through the grid, but can only return to the same
potential surface they were born on. Thus they cannot reach the vessel wall, but
instead lose their kinetic energy, stop, and are accelerated by the grid potential back
into the center of the grid. This then provides many "recirculations" through the center
of the grid volume where they have a finite probability of fusing. If not for the existence
1
UNCLASSIFIED/ ,sralil 8FFI&lallb 1!181! ·••LY

Not linked to a story yet.

About this file

Report, from the dia collection. The PDF is mirrored here; the original link is under it. 72 pages are in the text index: search them above, or from the library's search.