Schmidt Andreas, Rivier Simon, Cho Won Bae, Yim Jong Hyuk, Choi Sun Young, Lee Soonil, Rotermund Fabian, Rytz Daniel, Steinmeyer Günter, Petrov Valentin, Griebner Uwe
Max Born Institute for Nonlinear Optics and Short Pulse Spectroscopy, Max-Born-Str 2a, D-12489 Berlin, Germany.
Opt Express. 2009 Oct 26;17(22):20109-16. doi: 10.1364/OE.17.020109.
Transmission- and reflection-type single-walled carbon nanotube saturable absorbers (SWCNT-SAs) were designed and fabricated for passive mode-locking of bulk lasers in the 1 microm spectral range. Mode-locked laser operation based on a diffusion-bonded Yb:KYW/KYW crystal was demonstrated, and pulses as short as 83 fs and 140 fs were achieved applying reflection-type and transmission-type SWCNT-SA, respectively. The nonlinear parameters of the absorbers were measured to be in close vicinity to those of a semiconductor saturable absorber mirror for the same wavelength range. Mode-locking performance with SWCNT-SAs and the SESAM was compared utilizing the same cavity, with the SESAM resulting in only slightly shorter pulses of 66 fs duration. The nearly identical performance indicates that well-optimized SWCNT-SAs can substitute SESAMs even in the 1 microm region.
为了实现1微米光谱范围内体激光器的被动锁模,设计并制造了透射型和反射型单壁碳纳米管可饱和吸收体(SWCNT-SA)。展示了基于扩散键合Yb:KYW/KYW晶体的锁模激光运行,分别应用反射型和透射型SWCNT-SA实现了短至83飞秒和140飞秒的脉冲。在相同波长范围内,测量得出吸收体的非线性参数与半导体可饱和吸收镜的非线性参数非常接近。利用相同的腔比较了SWCNT-SA和SESAM的锁模性能,SESAM产生的脉冲仅略短,持续时间为66飞秒。几乎相同的性能表明,即使在1微米区域,优化良好的SWCNT-SA也可以替代SESAM。