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Contrastive study on two kinds of semiconductor saturable absorber mirrors for side-pumped passively mode-locked Nd:YAG lasers

机译:侧面泵浦无源锁模Nd:YAG激光器的两种半导体可饱和吸收镜的对比研究

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Based on the reflectance of saturable absorber depended on the optical intensity and the interference theory, we investigate the reflectance bandwidth characteristic of the semiconductor saturable absorber mirror (SESAM). Two kinds of SESAMs, one of which satisfies the antiresonance condition, and the other does not, are contrastively studied in mode-locked Nd:YAG lasers. Results show that stabilized continuous-wave mode-locking can also be obtained in picosecond regime by the SESAM, which dose not fulfill the antiresonance condition, as good as the results obtained using a mature commercial SESAM satisfying the antiresonance condition. Because the bandwidth of picosecond regime mode-locked pulse is not broad; therefore a broad bandwidth and a minimal group velocity are not necessary. Without considering the limit of the antiresonance condition, the difficulty of designing and growing SESAMs will be decreased significantly and there will be more freedom in the macroscopic parameters.
机译:基于饱和吸收器的反射率依赖于光学强度和干扰理论,我们研究了半导体可饱和吸收镜(SESAM)的反射带宽特性。其中一个SESAMS,其中一个满足反谐振条件,并且在模式锁定的Nd:YAG激光器中对其进行对比研究。结果表明,稳定的连续波模式锁定也可以通过SESAM在皮秒内获得,该SESAM是不符合反谐振条件的,与使用满足反谐振条件的成熟商业SESAM获得的结果一样好。因为PICOSECOND制度模式锁定脉冲的带宽不宽;因此,不需要宽带宽和最小的群体速度。在不考虑反谐振条件的限制,设计和生长SESAM的难度将会显着下降,并且在宏观参数中会有更多的自由度。

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