
It has been shown that a hybrid laser, which contains both an inhomogeneously broadened and a homogeneously broadened laser media, can improve the active mode locking performance.1,2 It generates coherent and shorter pulses as compared to that by either the inhomogeneously broadened medium or the homogenously broadened medium alone. In this paper, we present the results of a numerical study of passive mode locking with a hybrid laser. Gains of hybrid laser can be adjusted to ensure starting of the mode locking process and control the pulse bandwidth to within the lockable optical bandwidth that is governed by the absorber properties and group velocity dispersion (GVD).
Conference on Lasers and Electro-Optics 2002, Long Beach, California United States, 19–22 May 2002
Pulse shaping, UMBC High Performance Computing Facility (HPCF), UMBC Optical Fiber Communications Laboratory, Lasers, Hybrid lasers, Modes, Saturable absorbers, Dispersion
Pulse shaping, UMBC High Performance Computing Facility (HPCF), UMBC Optical Fiber Communications Laboratory, Lasers, Hybrid lasers, Modes, Saturable absorbers, Dispersion
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