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Efficient selection of high-order Laguerre-Gaussian modes in a Q-switched Nd:YAG laser

机译:高阶Laguerre-Gaussian模式在Q开关ND:YAG激光器中选择

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Intra-cavity binary phase elements are incorporated into a Q-switched Nd:YAG laser resonator to obtain efficient high-order transverse mode selection. The resonator configuration is analyzed using the propagation-matrix diagonalization method and the Fox-Li algorithm, and a simple model for predicting the relative output powers of the selected modes is developed. The predicted results are verified experimentally with binary phase elements for selecting the TEM01, TEM02 and TEM03, degenerate Laguerre-Gaussian modes. The output energy per pulse was 15 mJ for the TEM01, 16.5 mJ for TEM02 and 18.3 mJ for TEM03, all higher than the 10 mJ for the TEM00. The performance in Q-switched operation was found to be similar to that in free-running operation. The numerical calculations, experimental procedure and experimental results are presented.
机译:腔内二进制相结合到Q开关Nd:YAG激光谐振器中,以获得有效的高阶横向模式选择。使用传播矩阵对角化方法和Fox-Li算法分析谐振器配置,并且开发了一种用于预测所选模式的相对输出功率的简单模型。预测结果是通过实验验证的二进制相位元素,用于选择TEM01,TEM02和TEM03,退化Laguerre-Gaussian模式。对于TEM01,16.5 MJ为TEM02和TEM03的TEM01,TEM03的输出能量为15 MJ,全部高于TEM00的10 MJ。发现Q切换操作中的性能与自由运行操作中的表现类似。呈现了数值计算,实验程序和实验结果。

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