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Phys. Rev. E 65, 016504 (2001) [7 pages]

Resonantlike phenomenon in short-pulse free-electron-laser oscillators with modulated desynchronism

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Oscar G. Calderón*, Takuji Kimura, and Todd I. Smith
Stanford Picosecond FEL Center, Hansen Experimental Physics Laboratory, Stanford University, Stanford, California 94305-4085

Received 8 February 2001; revised 24 July 2001; published 18 December 2001

Recently a new method of controlling the pulse length of a short-pulse free-electron laser (FEL) has been developed. By modulating the synchronism between the optical and electron pulses in the FEL cavity, it was found that the output power and the micropulse length of the FEL beam oscillates at the modulation frequency. In this paper, we study theoretically the behavior of the micropulse length, both in the high loss (steady state) regime and the low loss (limit cycle) regime, when a modulated desynchronism is applied. In order to do this, we analyze the dynamics of a short-pulse FEL oscillator. The modulation frequency value plays an important role in the dynamics. We find that there is a resonantlike phenomenon between the externally applied desynchronism modulation and the limit cycle oscillation without modulation of a free-electron laser.

© 2001 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevE.65.016504
DOI:
10.1103/PhysRevE.65.016504
PACS:
41.60.Cr, 42.65.Sf, 42.60.Jf

*Permanent address: Departamento Optica, Universidad Complutense, Cuidad Universitaria s/n, 28040 Madrid, Spain.