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Dynamics and long-term stability of single and multi-longitudinal mode 473-nm diode-pumped Nd:YAG/KNbO3 lasers

机译:单和多纵向模式473-NM二极管泵浦ND:YAG / KNBO3激光器的动力学和长期稳定性

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Diode pumped frequency doubled Nd :YAG microchip lasers should become an alternative to air-cooled argon ion lasers. The main issues to be solved are the long-term stabilization of the single frequency operation and the power control of the multi-frequency operation. These questions are mostly related to the laser dynamics. In this paper, we present an accurate modelling of the laser dynamics, including quenching processes, non uniform pumping, partial overlap of optical signals and excited-state populations, hole burning and type-I frequency doubling. We theoretically predict that even in multimode operation, only one mode is oscillating at a time, with a mode hoping at a rate of about 50 kHz. This behavior, quite different from the well known dynamics of intra-cavity type-II frequency doubled lasers (green noise) is experimentally confirmed. Diode pumped frequency doubled Nd:YAG 473 nm lasers based on a simple linear cavity are built and exhibit high output power (90+ mW) and record slope efficiency (45% with respect to absorbed power). The understanding of its 2-mode operation allowed us to stabilize the average output power. A similar laser was operated on a single frequency. No wavelength drift could be measured and no mode hopping was observed over 24 hours.
机译:二极管泵送频率加倍:YAG微芯片激光器应成为风冷氩离子激光器的替代方案。要解决的主要问题是单频操作的长期稳定和多频操作的功率控制。这些问题主要与激光动力学相关。在本文中,我们提出了一种精确的激光动力学建模,包括淬火过程,非均匀泵送,光学信号的部分重叠和兴奋状态群,孔燃烧和型频率加倍。理论上我们预测,即使在多模操作中,也只有一种模式一次振荡,模式以大约50kHz的速率为希望。实验证实了这种行为与腔内II型频率加倍的众所周知的动态(绿色噪声)完全不同。二极管泵送频率加倍:基于简单线性腔的YAG 473 nm激光器构建并表现出高输出功率(90+ MW)并记录斜率效率(相对于吸收功率45%)。理解其2模式操作允许我们稳定平均输出功率。在单个频率上操作类似的激光。可以测量没有波长漂移,并且在24小时内没有观察到模式跳跃。

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