Title :
Electron gun design for fundamental mode S-band multiple-beam amplifiers
Author :
Nguyen, Khanh T. ; Pershing, Dean E. ; Abe, David K. ; Levush, Baruch ; Wood, Franklin N. ; Calame, Jeffrey P. ; Pasour, John A. ; Petillo, John J. ; Cusick, Michael ; Cattelino, Mark J. ; Wright, Edward L.
Author_Institution :
Beam Wave Res. Inc., Silver Spring, MD, USA
fDate :
6/1/2004 12:00:00 AM
Abstract :
This paper describes the detailed design of an eight-beam electron gun for use in S-band multiple-beam amplifiers operating in the fundamental mode. The gun operating voltage is 45 kV with a total beam current of 32 A, evenly divided among the beamlets. Each individual beam has a perveance of 0.42 mpervs making a total beam perveance of 3.35 mpervs. The optimized electron gun is singly convergent using a four-fold symmetry with the four inner and four outer emitters interlaced 90° apart. The emitter current density has been kept below 10 A/cm2 (space-charge limited). The cathode is magnetically shielded and the longitudinal magnetic field in the interaction region is in the range of 1.1-1.8 kG. The design of the magnetic focusing system minimizes beam corkscrewing as well as electron interception on the tunnel walls. Beam optics simulations of the gun indicate excellent beam transport characteristics with a final beam-to-tunnel radial fill factor of less than 0.45. The primary computational tools used in the design process were the three-dimensional gun code MICHELLE, and the magnetostatics code MAXWELL-3D.
Keywords :
cathodes; current density; electron beam focusing; electron guns; klystrons; microwave amplifiers; particle beam dynamics; 1.1 to 1.8 kG; 32 A; 45 kV; beam corkscrewing; beam current; beam optics simulations; beam perveance; beam transport; beam-to-tunnel radial fill factor; eight-beam electron gun design; electron interception; emitter current density; four-fold symmetry; fundamental mode s-band multiple-beam amplifiers; longitudinal magnetic field; magnetic focusing system; magnetically shielded cathode; magnetostatics code MAXWELL-3D; singly convergent optimized electron gun; three-dimensional gun code MICHELLE; tunnel walls; Cathodes; Current density; Electron beams; Electron emission; Electron optics; Magnetic shielding; Magnetostatics; Optical amplifiers; Optical beams; Voltage; Electron gun; MICHELLE; klystron; multibeam; multiple beam;
Journal_Title :
Plasma Science, IEEE Transactions on
DOI :
10.1109/TPS.2004.828803