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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Theoretical investigation of feasibility of Yb:YAG as laser material for nanosecond pulse emission with large energies in the Joule range
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Theoretical investigation of feasibility of Yb:YAG as laser material for nanosecond pulse emission with large energies in the Joule range

机译:Yb:YAG用作焦耳范围内大能量纳秒脉冲发射激光材料的可行性的理论研究

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摘要

The long fluorescence lifetime of the upper laser level of Yb:YAG seems to make it an attractive material for the realization of Q-switched pulses with large pulse energy. The consequences of the spectroscopic parameter set of Yb:YAG for the feasibility of a large pulse energy laser, which emits pulses with nanosecond duration, are addressed on the basis of a rate equation model. The rate equations are analytically solved and applied to the optical side pumping of Yb:YAG rods. The thermal population of the lower laser level and the saturation of the laser material are discussed in specific
机译:Yb:YAG激光上级的长荧光寿命似乎使其成为实现具有大脉冲能量的Q开关脉冲的诱人材料。 Yb:YAG光谱参数集对大脉冲能量激光器的可行性的影响,该激光器发射具有纳秒持续时间的脉冲,并基于速率方程模型进行了研究。速率方程经过解析求解,并应用于Yb:YAG棒的光学侧泵浦。具体讨论了较低激光水平的热填充和激光材料的饱和度

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