首页> 外文会议>Conference on High-Power Laser Ablation V pt.1; 20040425-20040430; Taos,NM; US >A feasible concept for a 100 kW cw CO_2 laser based on an existing 6kW Device
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A feasible concept for a 100 kW cw CO_2 laser based on an existing 6kW Device

机译:基于现有6kW设备的100 kW cw CO_2激光器的可行方案

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The carbon dioxide laser uses as the light amplifying medium a weakly ionised mixture of carbon dioxide, nitrogen and helium (glow discharge). Pumping is performed automatically by interparticle collisions and light output per unit volume is considerably high up to several watt per cubic centimeter. Thus carbon dioxide lasers were most successful in generating high powers, where several construction schemes have been developed during the last twenty years as for instance slim cylindrical plasmas (gas transport lasers) and thin slabs (diffusion cooled lasers). A third geometry has been developed by the author showing an annular cross section of the light emitting plasma with coaxial electrodes for the supply with electrical power. The latter geometry together with RF excitation and a very fast gas flow for heat dissipation shows an unbeaten beam power capability. The concept of the coaxial laser has been realised at the University of Technology in Vienna and proved to be excellently suited for technological purpose. Moreover a theoretical estimation showed that the latter concept can be extended to a feasible construction of a 100 kW cw laser consisting of 4 plasma modules, each having a diameter of 25 cm and a length of 75 cm. The excitation must be carried out with a 1 Megawatt RF transmitter as it is used in broadcasting. For cooling extra strong blowers are necessary. In the bulk of the paper first the already existing 6 kW coaxial laser will be presented and then the concept for a 100 kW cw carbon dioxide laser will be discussed.
机译:二氧化碳激光器使用二氧化碳,氮气和氦气的弱电离混合物作为光放大介质(辉光放电)。抽运是通过粒子间的碰撞自动进行的,单位体积的光输出非常高,高达每立方厘米几瓦。因此,二氧化碳激光器在产生高功率方面最为成功,在过去的二十年中,已经开发出了多种构造方案,例如细长的圆柱形等离子体(气体传输激光器)和薄的平板(扩散冷却激光器)。作者已经开发出第三种几何形状,示出了具有同轴电极的发光等离子体的环形横截面,以用于供电。后者的几何形状与RF激励以及用于散热的非常快的气流一起显示了无与伦比的光束功率能力。同轴激光的概念已在维也纳科技大学实现,并被证明非常适合技术用途。此外,理论上的估计表明,后一种概念可以扩展到100 kW cw激光器的可行构造,该激光器由4个等离子模块组成,每个模块的直径为25 cm,长度为75 cm。激励必须在广播中使用的1兆瓦RF发射机进行。为了冷却,需要额外的鼓风机。在本文的大部分内容中,将首先介绍已经存在的6 kW同轴激光器,然后将讨论100 kW cw二氧化碳激光器的概念。

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