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Azimuthally unstable resonators for high-power CO/sub 2/ lasers with annular gain media

机译:具有环形增益介质的大功率CO / sub 2 /激光器的方位角不稳定谐振器

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Stable-unstable resonators have proved suitable for the extraction of a high-quality beam from a gain area that consists of a rectangular slab. Such gain areas have two substantially different transverse dimensions, and the resonators are stable in the small dimension while unstable in the larger one. Using off-axis unstable resonators avoids a central beam obscuration and improves beam quality. The adaptation of stable-unstable resonators to annular gain areas is described in this paper. The resulting resonators are stable in the radial direction and unstable in the azimuthal direction. Different unstable resonators, wound to match the annular geometry, are presented. The resonator modes are calculated numerically using a 3D-diffraction code that considers gain and misalignment. Resonator design parameters are obtained from a geometrical description of the resonator. Experimental results from a diffusion-cooled CO/sub 2/ laser confirm theoretical predictions and show that the resonators are capable of extracting beams that are nearly diffraction-limited with high efficiency from an annular gain medium. Output powers of 2 kW have been obtained from a gain length of 1.8 m.
机译:事实证明,稳定不稳定的谐振器适用于从由矩形平板组成的增益区域提取高质量光束。这样的增益区域具有两个基本上不同的横向尺寸,并且谐振器在小尺寸上是稳定的,而在大尺寸上是不稳定的。使用离轴不稳定谐振器可以避免中心光束模糊并提高光束质量。本文介绍了稳态不稳定谐振器对环形增益区域的适应性。所得的谐振器在径向方向上是稳定的,在方位角方向上是不稳定的。提出了缠绕成匹配环形几何形状的不同不稳定谐振器。谐振器模式是使用考虑了增益和未对准的3D衍射代码以数字方式计算的。谐振器设计参数是从谐振器的几何描述中获得的。扩散冷却的CO / sub 2 /激光器的实验结果证实了理论预测,并表明谐振器能够从环形增益介质中高效提取几乎衍射极限的光束。从1.8 m的增益长度获得2 kW的输出功率。

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