DocumentCode
1339704
Title
Design of high-average-power near-millimeter free electron laser oscillators using short period wigglers and sheet electron beams
Author
Booske, John H. ; Radack, Daniel J. ; Antonsen, Thomas M., Jr. ; Bidwell, Steven W. ; Carmel, Yuval ; Destler, William W. ; Freund, Henry P. ; Granatstein, Victor L. ; Latham, Peter E. ; Levush, Baruch ; Mayergoyz, Isaak D. ; Serbeto, A.
Author_Institution
Dept. of Electr. & Comput. Eng., Wisconsin Univ., Madison, WI, USA
Volume
18
Issue
3
fYear
1990
fDate
6/1/1990 12:00:00 AM
Firstpage
399
Lastpage
415
Abstract
The design and feasibility of a 1-MW continuous-wave (CW) free electron laser (FEL) oscillator are reviewed. The proposed configuration includes a short-period (I w~ 1 cm) planar wiggler, a sheet electron beam, a 0.5-1.0-MV thermionic electron gun, a hybrid waveguide/quasi-optical resonator, commercial DC power supplies, and a depressed collector. Cavity ohmic RF losses are estimated to be extremely low (⩽10-100 W/cm2) at 1/MW output power, while thermal heat transfer studies conservatively indicate that wall cooling up to 1500 W/cm2 should be possible. Experiments have convincingly verified theory and simulations which predict that negligible body currents will be achievable with low-emittance low-space-charge sheet beams. High-voltage sheet beam gun design studies indicate that the required beam quality can be achieved with CW compatible devices. The spent beam energy distribution is consistent with highly efficient spent beam energy recovery, and the proposed resonator cavity should provide mode discrimination and beam/RF separation capability
Keywords
beam handling equipment; free electron lasers; laser accessories; laser cavity resonators; microwave oscillators; 0.5 to 1.0 MV; 1 MW; CW compatible devices; cavity ohmic RF losses; continuous wave free electron laser; hybrid waveguide/quasi-optical resonator; near-millimeter free electron laser oscillators; planar wiggler; sheet electron beams; short period wigglers; thermal heat transfer; thermionic electron gun; wall cooling; Electron beams; Free electron lasers; Optical design; Oscillators; Planar waveguides; Power generation; Power supplies; Radio frequency; Undulators; Waveguide lasers;
fLanguage
English
Journal_Title
Plasma Science, IEEE Transactions on
Publisher
ieee
ISSN
0093-3813
Type
jour
DOI
10.1109/27.55909
Filename
55909
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