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Evolution of the electric discharge oxygen-iodine laser

机译:放电式碘伏激光的演变

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Experiments and modeling have led to a continuing evolution of the Electric Oxygen-Iodine Laser (ElectricOIL) system. This continuous wave (cw) laser operating on the 1315 nm transition of atomic iodine is pumped by the production of O_2(a) in a radio-frequency (RF) discharge in an O_2/He/NO gas mixture. New discharge geometries have led to improvements in O_2(a) production and efficiency. Further, size scaling is presently showing a super-linear growth in performance; a 95% enhancement in cw laser power was achieved via a 50% increase in gain length, flow rates, and discharge power. New gain recovery measurements and modeling downstream of an operating laser cavity are presented in this work for a wider range of flow conditions to help identify previously unidentified kinetic processes. Larger volume resonators that extend further downstream in the flow direction were able to extract more of the excess energy being carried by the O_2(a) from the ElectricOIL gain medium; a further 87% increase in extracted laser power was obtained. As understanding of the ElectricOIL system continues to improve, the design of the laser systematically evolves. The gain has improved by more than 100-fold from the initial demonstration of 0.002% cm~(-1) to 0.26% cm~(-1), and similarly the outcoupled laser power has increased more than 600-fold from 0.16 W to 109 W.
机译:实验和建模导致了氧碘碘激光器(ElectricOIL)系统的不断发展。通过在O_2 / He / NO气体混合物中以射频(RF)放电产生O_2(a)来泵浦在原子碘的1315 nm跃迁上运行的连续波(cw)激光器。新的放电几何形状导致O_2(a)生产和效率的提高。此外,尺寸缩放目前显示出性能的超线性增长。通过将增益长度,流量和放电功率增加50%,可以将连续波激光功率提高95%。在这项工作中,针对更广泛的流动条件,提出了工作激光器腔下游的新增益恢复测量和建模,以帮助识别先前无法确定的动力学过程。沿流向进一步向下游延伸的更大体积的谐振器能够从ElectricOIL增益介质中提取O_2(a)携带的更多多余能量;提取的激光功率进一步提高了87%。随着对ElectricOIL系统的理解的不断提高,激光器的设计也在系统地发展。从最初的0.002%cm〜(-1)提高到0.26%cm〜(-1),增益提高了100倍以上,同样,输出的激光功率从0.16 W提高到600倍以上,达到了600倍。 109瓦

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