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Laser-diode pumped self-Q-switched microchip lasers

机译:激光二极管泵浦自调Q微芯片激光器

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摘要

Optical properties of Cr,Yb:YAG, Cr,Nd:YAG crystals, and composite Yb:YAG/Cr:YAG ceramics self-Q-switched solid-state laser materials are presented. The merits of these self-Q-switched laser materials are given and the potentials of such lasers can be chosen by the applications. Cr,Yb:YAG and composite Yb:YAG/Cr:YAG ceramics self-Q-switched laser are conducted. Although several tens of kW peak power can be obtained with a monolithic microchip Cr,Yb:YAG laser, the experimental results show that the performance of this laser is limited by the absorption of Cr(4+) ions at a pump wavelength of 940 nm and strong fluorescence quenching at high Cr concentration. Composite Yb:YAG/Cr:YAG ceramics are more suitable to realize high pulse energy and peak power (up to MW level) with optimized lasing and Q-switching parts. In addition, the instabilities induced by the multi-longitudinal mode competition in Cr,Nd:YAG and Cr,Yb:YAG microchip lasers are addressed. The different gain bandwidths of Yb:YAG and Nd:YAG play an important role in the instability of the output laser pulse trains. Stable laser pulses from the Cr,Yb:YAG microchip laser were obtained due to the antiphase dynamics. For the Cr,Nd:YAG microchip laser, the instability caused by the multi-longitudinal mode competition is an intrinsic property. Different transverse patterns were observed in Cr,Nd:YAG microchip lasers when a pump beam with larger diameter was used. Saturated inversion population distribution inside the gain medium plays an important role in the transverse pattern formation. Different transverse patterns were reconstructed by combining different sets of the Hermite-Gaussian modes. (C) 2008 The Optical Society of Japan.
机译:介绍了Cr,Yb:YAG,Cr,Nd:YAG晶体和复合Yb:YAG / Cr:YAG陶瓷自调Q固态激光材料的光学性能。给出了这些自调Q激光材料的优点,并且可以根据应用选择此类激光的电势。进行了Cr,Yb:YAG和复合Yb:YAG / Cr:YAG陶瓷自调Q激光器的研究。尽管使用单片微芯片Cr,Yb:YAG激光器可以获得数十kW的峰值功率,但实验结果表明,该激光器的性能受到940 nm泵浦波长下Cr(4+)离子的吸收的限制在高Cr浓度下具有较强的荧光猝灭作用。 Yb:YAG / Cr:YAG复合陶瓷更适合于通过优化的激光和Q开关部件实现高脉冲能量和峰值功率(高达MW级)。此外,还解决了在Cr,Nd:YAG和Cr,Yb:YAG微芯片激光器中由多纵向模式竞争引起的不稳定性。 Yb:YAG和Nd:YAG的不同增益带宽在输出激光脉冲序列的不稳定性中起重要作用。由于反相动力学,从Cr,Yb:YAG微芯片激光器获得了稳定的激光脉冲。对于Cr,Nd:YAG微芯片激光器,由多纵向模式竞争引起的不稳定性是一种固有特性。当使用较大直径的泵浦光束时,在Cr,Nd:YAG微芯片激光器中观察到不同的横向图案。增益介质内部饱和的反演种群分布在横向模式形成中起着重要作用。通过组合不同的Hermite-Gaussian模式集来重构不同的横向模式。 (C)2008年日本光学学会。

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