Published December 1993 | Version v1
Journal article

Experimental and numerical studies of sheet electron beam propagation through a planar wiggler magnet

  • 1. Univ. of Maryland, College Park, MD (United States)
  • 2. NASA, Greenbelt, MD (United States). Goddard Space Flight Center
  • 3. SAIC, Arlington, VA (United States)

Description

Detailed experimental studies on sheet relativistic electron beam propagation through a long planar wiggler are reported and compared with numerical simulations. The planar wiggler has 56 periods with a period of 9.6 mm. Typically, the wiggler field peak amplitude is 5 kG. The experimental efforts have been focused on control of the deviation of the beam toward the side edge of the planar wiggler along the wide transverse direction. It is found that a suitably tapered magnetic field configuration at the wiggler entrance can considerably reduce the rate of the deviation. The effects of the following techniques on beam transport efficiency are also discussed: side focusing, beam transverse velocity tuning at the wiggler entrance, and beam spread limiting. High beam transport efficiency (almost 100%) of a 15 A beam has been obtained in some cases. The results are relevant to development of a free electron laser amplifier for application to stabilizing and heating of plasma in magnetic fusion research

Additional details

Publishing Information

Journal Title
IEEE Transactions on Plasma Science
Journal Volume
21
Journal Issue
6
Journal Page Range
p. 760-767.
ISSN
0093-3813
CODEN
ITPSBD

INIS

Country of Publication
United States
Country of Input or Organization
United States
INIS RN
25046389
Subject category
S70: PLASMA PHYSICS AND FUSION TECHNOLOGY;
Resource subtype / Literary indicator
Numerical Data
Descriptors DEI
BEAM TRANSPORT; EXPERIMENTAL DATA; FREE ELECTRON LASERS; MAGNETIC CONFINEMENT; PLASMA HEATING; THEORETICAL DATA; THERMONUCLEAR DEVICES; WIGGLER MAGNETS
Descriptors DEC
AMPLIFIERS; CONFINEMENT; DATA; EQUIPMENT; HEATING; INFORMATION; LASERS; MAGNETS; NUMERICAL DATA; PLASMA CONFINEMENT