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Effect of intra-cavity diffusion-bonded optical-elements on laser performance

机译:腔内扩散键合光学元件对激光性能的影响

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Diffusion-bonded surfaces inside a cavity usually have little effect on a laser beam when oriented perpendicular to the beam direction. They may have a severe effect on lasing efficiency and mode structure when oriented parallel to the beam. Characterization of the interface between diffusion bonded elements and the understanding of its effect on lasing is, Therefore, important. Isolating the effect of the bonding interface from effects such as an index difference between the bulks, we used bonded BK7 slabs as the bonded element. We measured the reflections arising from the bonding interface, and then put the slabs as a passive element inside a hemispherical resonator. It was found that even for similar materials, with no refraction index difference, significant reflections occur at the bonding interface for oblique angles of incidence. When put intracavity parallel to beam axis the bonded slabs caused a significant power loss and forced higher order lasing modes. The power loss depended on both, the transmission through the interface and the size of the interface cross section relative to beam diameter.
机译:当垂直于光束方向定向时,腔体内的扩散结合表面通常对激光束几乎没有影响。当平行于光束定向时,它们可能对激光效率和模式结构产生严重影响。因此,表征扩散结合元素之间的界面以及了解其对激光的影响非常重要。为了将键合界面的影响与块体之间的折射率差异等影响隔离开来,我们使用键合的BK7平板作为键合元素。我们测量了从键合界面产生的反射,然后将平板作为无源元件放置在半球形谐振器内。发现即使对于相似的材料,在没有折射率差异的情况下,对于倾斜入射角,在粘结界面处也会发生明显的反射。当腔内平行于光束轴放置时,粘结的平板会导致明显的功率损耗并强制采用更高阶的激光模式。功率损耗取决于通过界面的透射率和界面横截面相对于光束直径的大小。

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