超快激光器色散镜的设计、制造与表征

Weidong Shen, Q. Ma, Zhen-fei Luo, Shuna Zhang, Yue-guang Zhang, X. Liu
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引用次数: 1

摘要

本文介绍了色散多层膜的设计、制作和表征方法。采用粒子群优化方法设计了两种色散镜面(高色散镜面和700 ~ 900nm Gires-Tournois镜面),该方法收敛速度快,对初始参数的依赖较小。利用自制的双离子束溅射系统制备了具有稳定沉积速率和高密度的反射镜。为了精确测量色散特性,建立了白光干涉法。提出了一种新的基于小波的微分方法,该方法具有较强的抗测量误差能力。测量结果与设计结果吻合良好,验证了制备方法和表征方法的准确性。最后,介绍了在掺镱光子晶体光纤激光器和Ti:蓝宝石晶体振荡腔中使用我们制作的反射镜进行色散补偿的两种应用。两种超快激光系统均具有良好的输出特性。
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Design, fabrication and characterization of dispersive mirrors for ultrafast lasers
The design, fabrication and characterization of the dispersive multilayers are presented in this paper. Two kinds of dispersive mirror (High dispersion and 700-900nm Gires-Tournois mirrors) are designed by employing Particle Swarm Optimization method which demonstrates fast convergence speed and less dependence on the initial parameters. The mirrors are experimentally fabricated by home-made dual ion beam sputtering system with stable deposition rate and high density. A white light interferometry is built for precisely measuring the dispersion properties. A novel wavelet-based differentiation approach is introduced with considerable resistance to measurement error. The good agreement between the measured and designed results verifies the accuracy of both the fabrication and characterization method. Finally, two applications of Yb-doped photonic crystal fiber laser and Ti:Sapphire crystal oscillation cavity, which use our fabricated mirrors for dispersion compensation, are presented. Good output characteristics of both the two ultrafast laser systems are obtained.
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