Abstract:
Intracavity semiconductor saturable absorber mirrors (SESAM's) offer unique and exciting possibilities for passively pulsed solid-state laser systems, extending from Q-sw...Show MoreMetadata
Abstract:
Intracavity semiconductor saturable absorber mirrors (SESAM's) offer unique and exciting possibilities for passively pulsed solid-state laser systems, extending from Q-switched pulses in the nanosecond and picosecond regime to mode-locked pulses from 10's of picoseconds to sub-10 fs. This paper reviews the design requirements of SESAM's for stable pulse generation in both the mode-locked and Q-switched regime. The combination of device structure and material parameters for SESAM's provide sufficient design freedom to choose key parameters such as recovery time, saturation intensity, and saturation fluence, in a compact structure with low insertion loss. We have been able to demonstrate, for example, passive modelocking (with no Q-switching) using an intracavity saturable absorber in solid-state lasers with long upper state lifetimes (e.g., 1-/spl mu/m neodymium transitions), Kerr lens modelocking assisted with pulsewidths as short as 6.5 fs from a Ti:sapphire laser-the shortest pulses ever produced directly out of a laser without any external pulse compression, and passive Q-switching with pulses as short as 56 ps-the shortest pulses ever produced directly from a Q-switched solid-state laser. Diode-pumping of such lasers is leading to practical, real-world ultrafast sources, and we will review results on diode-pumped Cr:LiSAF, Nd:glass, Yb:YAG, Nd:YAG, Nd:YLF, Nd:LSB, and Nd:YVO/sub 4/.
Published in: IEEE Journal of Selected Topics in Quantum Electronics ( Volume: 2, Issue: 3, September 1996)
DOI: 10.1109/2944.571743
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Pulse Generator ,
- Solid-state Laser ,
- Saturable Absorber ,
- Bleaching ,
- Phase Shift ,
- Laser Pulse ,
- Recovery Time ,
- Pulse Width ,
- Diode Laser ,
- Material Parameters ,
- Device Structure ,
- Laser System ,
- YAG Laser ,
- Femtosecond Laser ,
- Insertion Loss ,
- Pulse Repetition Rate ,
- Saturation Intensity ,
- Mode-locked Laser ,
- Antiresonance ,
- Bandgap Engineering ,
- Absorber Layer ,
- Optical Pulse ,
- Dielectric Mirror ,
- Bragg Reflector ,
- Layer Spacing ,
- Dispersion Compensation ,
- Diode-pumped Laser ,
- Sapphire Laser ,
- Self-phase Modulation ,
- Pulse Duration
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Pulse Generator ,
- Solid-state Laser ,
- Saturable Absorber ,
- Bleaching ,
- Phase Shift ,
- Laser Pulse ,
- Recovery Time ,
- Pulse Width ,
- Diode Laser ,
- Material Parameters ,
- Device Structure ,
- Laser System ,
- YAG Laser ,
- Femtosecond Laser ,
- Insertion Loss ,
- Pulse Repetition Rate ,
- Saturation Intensity ,
- Mode-locked Laser ,
- Antiresonance ,
- Bandgap Engineering ,
- Absorber Layer ,
- Optical Pulse ,
- Dielectric Mirror ,
- Bragg Reflector ,
- Layer Spacing ,
- Dispersion Compensation ,
- Diode-pumped Laser ,
- Sapphire Laser ,
- Self-phase Modulation ,
- Pulse Duration