DocumentCode :
1114931
Title :
Regenerative gain in a Raman free-electron laser oscillator
Author :
Masud, J. ; Marshall, T.C. ; Schlesinger, S.P. ; Yee, F.G.
Author_Institution :
Columbia University, New York, NY
Volume :
23
Issue :
9
fYear :
1987
fDate :
9/1/1987 12:00:00 AM
Firstpage :
1594
Lastpage :
1604
Abstract :
A parametric study of gain in a millimeter-wave Raman free-electron laser oscillator and comparisons to linear theory are carried out. The intense (1 kA/cm2), relativistic (600-800 keV), cold [ (\\delta \\gamma /\\gamma )_{\\parallel} < 1 percent] electron beam employed is guided by a 9.45 kG magnetic field through a 1.45 cm period, 49.5 cm long uniform undulator. Operation at < 1 kG pump field results in a < 10 percent electron quiver velocity ( \\upsilon _{\\perp }/\\upsilon _{\\parallel} ) velocity. The laser power output has been mea sured at ∼ 3 MW corresponding to an efficiency of 4 percent, and tunability in the 90-170 GHz range has been achieved with a narrow linewidth ( \\Delta \\lambda /\\lambda \\leq 1 percent). Using a new technique, linear small-signal growth rates have been unfolded from the oscillator startup delays. Excellent agreement is found with three-dimensional small-signal calculations for both the spatial growth rate and the resonance frequency. One-dimensional theory was found to predict shorter wavelength laser output than that observed.
Keywords :
Free electron lasers; Millimeter-wave lasers; Millimeter-wave oscillators; Raman lasers; Electron beams; Free electron lasers; Laser theory; Magnetic fields; Millimeter wave technology; Oscillators; Parametric study; Power lasers; Pump lasers; Undulators;
fLanguage :
English
Journal_Title :
Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9197
Type :
jour
DOI :
10.1109/JQE.1987.1073540
Filename :
1073540
Link To Document :
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