首页> 外文会议>Conference on High-Power Laser Ablation V pt.1; 20040425-20040430; Taos,NM; US >Innovative discharge geometries for diffusion cooled gas lasers
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Innovative discharge geometries for diffusion cooled gas lasers

机译:扩散冷却气体激光器的创新放电几何形状

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摘要

Large area, narrow discharge gap, diffusion cooled gas lasers are nowadays a well established technology for the construction of industrial laser sources. Successful examples exist both with the slab (Rofm-Sinar) or coaxial (Trumpf) geometry. The main physical properties and the associated technical problems of the transverse large area RF discharge, adopted for the excitation of high power diffusion cooled gas lasers, are reviewed here. The main problems of this technology are related to the maintenance of a uniform and stable plasma excitation between closely spaced large-area electrodes at high power-density loading. Some practical solutions such as distributed resonance of the discharge channel proved successful in the case of square or rectangular cross-sections but hardly applicable to geometries such as that of coaxial electrodes. In this paper we present some solutions, adopted by our group, for the development of slab and annular CO2 lasers and for CO_2 laser arrays with linear or circular symmetry. We will also briefly mention the difficulties encountered in the extraction of a good quality beam from an active medium with such a cross section. A problem that has also seen some interesting solutions.
机译:如今,大面积,狭窄的放电间隙,扩散冷却的气体激光器已成为构建工业激光源的成熟技术。平板(Rofm-Sinar)或同轴(Trumpf)几何都存在成功的例子。这里回顾了用于大功率扩散冷却气体激光器激发的横向大面积射频放电的主要物理特性和相关的技术问题。该技术的主要问题与在高功率密度负载下维持紧密间隔的大面积电极之间的均匀且稳定的等离子体激发有关。事实证明,一些实用的解决方案(例如放电通道的分布共振)在正方形或矩形横截面的情况下是成功的,但几乎不适用于诸如同轴电极的几何形状。在本文中,我们提出了小组采用的一些解决方案,用于开发平板和环形CO2激光器以及线性或圆形对称的CO_2激光器阵列。我们还将简要提及从具有这种横截面的活性介质中提取高质量光束时遇到的困难。这个问题也看到了一些有趣的解决方案。

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