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Efficient generation of cylindrically polarized beams in an Yb∶YAG thin-disk laser enabled by a ring-shaped pumping distribution

机译:通过环形泵送分布使能在YB:yag薄盘激光器中有效地产生圆柱偏振梁

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The efficient generation of a cylindrically (radially or azimuthally) polarized LG_(01) mode was investigated using a ring-shaped pumping distribution in a high-power Yb∶YAG thin-disk laser setup. This was realized by implementing a 300 mm long customized fused silica fiber capillary in the pump beam path of the pumping optics of a thin-disk laser. Furthermore, a grating waveguide mirror based on the leaky-mode coupling mechanism was used as one of the cavity end mirrors to allow sufficient reduction of the reflectivity of the polarization state to be suppressed in the resonator. In order to achieve efficient laser operation, an optimized mode overlap between the ring-shaped pump spot and the excited first order Laguerre-Gaussian doughnut mode is required. This was investigated theoretically by analyzing the intensity distribution generated by different fiber geometries using a commercially raytracing software (Zemax). The output power, polarization state and efficiency of the emitted laser beam were compared to that obtained with a standard flattop pumping distribution. In particular, the thermal behavior of the disk was investigated since the excessive fluorescence caused by the non-saturated excitation in the center of the homogeneously pumped disk leads to a strong heating of the crystal. This considerable heating source is avoided in the case of the ring-shaped pumping and a reduction of the temperature increase on the disk surface of about 21% (at 280 W of pump power) was observed. This should allow higher pump power densities without increasing the risk of damaging the disk or distorting the polarization purity. With a laser efficiency of 41.2% to be as high as in the case of the flattop pumping, a maximum output power of 107 W was measured.
机译:使用高功率YB:yag薄圆盘激光设置中的环形泵送分布研究了圆柱形(径向或四方)偏振的LG_(01)模式的高效产生。这是通过在薄盘激光器的泵浦光学器的泵浦光束路径中实施300mm长定定的熔融二氧化硅纤维毛细管来实现这一点。此外,基于泄漏模式耦合机构的光栅波导镜被用作腔端镜中的一个,以允许在谐振器中抑制偏振状态的反射率的足够减小。为了实现高效的激光操作,需要优化的模式在环形泵点和兴奋的第一订单Laguerre-Gaussian甜甜圈模式之间重叠。理论上通过使用商业横梁软件(ZEMAX)分析不同纤维几何形状产生的强度分布来研究这一点。将发射的激光束的输出功率,偏振状态和效率进行比较,与标准圆形泵送分布相比。特别地,研究了盘的热行为,因为由均匀泵送盘的中心的非饱和激发引起的过量荧光导致晶体的强加热。在环形泵送的情况下,避免了这种相当大的加热源,并且观察到磁盘表面上的温度升高约为21%(在泵浦功率为280W)。这应该允许更高的泵电信密度而不会增加损坏磁盘或扭曲偏振纯度的风险。激光效率为41.2%,与圆形泵送的情况一样高,测量107W的最大输出功率。

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