Journal of Applied Physics · 1988 · 56 citations · 11 references
PhotonicsFree-electron LasersEngineeringPhysicsRelativistic Laser-matter InteractionApplied PhysicsFilamentation InstabilitiesRelativistic PlasmaLaser-plasma InteractionSheet Electron BeamElectron OpticNarrow Waveguide ChannelFree Electron Laser
A recent design concept for millimeter-wave free-electron lasers [J. Appl. Phys. 60, 521 (1986)] would require the stable propagation of a sheet electron beam through a narrow waveguide channel. Experimental results reported in this article support the feasibility of such a configuration by demonstrating the stable propagation of relativistic sheet electron beams through a narrow waveguide gap (3.2 mm) using focusing by a short-period electromagnet wiggler. 90% of the electron current in a 100-keV sheet electron beam was transmitted through a 5-cm-long channel with peak wiggler fields of 800 G. Almost 80% of a 400-keV beam was similarly confined with a 1600-G wiggler field. The data were consistent with single electron trajectory models, indicating that space-charge effects were minimal. No evidence of beam breakup or filamentation instabilities was observed.
11
Peter T. Kirstein, G. S. Kino, William E. Waters et al. · Physics Today · 1968 · 132 citations
Breakup of hollow cylindrical electron beams
R. L. Kyhl, H. F. Webster · IRE Transactions on Electron Devices · 1956 · 89 citations
Engineering, Beam Optic, Physics +9
Instability in Hollow and Strip Electron Beams
C. C. Cutler · Journal of Applied Physics · 1956 · 72 citations
Magnetar, Engineering, Physics +11