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Efficient e-beam and discharge initiated nonchain HF(DF) lasers

机译:高效的电子束和放电引发非链式HF(DF)激光器

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The spectral and amplitude-temporal parameters of HF (DF) lasers pumped by nonchain chemical reactions initiated by radially convergent or planar e-beams and self-sustained discharge were studied. Intrinsic efficiency of the HF lasers up to similar to10% was obtained for both excitation methods. It was shown that the high efficiency of an e-beam-initiated HF laser may be attained as a result of the simultaneous formation of atomic and molecular fluorine and of the participation of F-2 in Population inversion. A laser pulse has a complex profile caused by the successive generation of P-lines and the overlap during the radiation pulse of both the rotational lines of the same vibration band and of individual vibration bands. Experimental conditions providing high intrinsic efficiency of a discharge nonchain HF (DF) laser are determined. Intrinsic efficiency of HF and DF lasers up to eta(in) similar to 10% and 7%, respectively, is obtained using excitation by inductive and LC generators in the SF6-H-2 (D-2) Mixtures. High discharge uniformity obtained with the use of special shaped electrodes along with uniform UV preionization is a key parameter for improving the intrinsic efficiency of discharge HF (DF) lasers. It was found that in this excitation condition, output spectra of the HF laser significantly widen and cascade laser action on some rotational lines of the vibrational transitions of HF molecules v(3-2) --> v(2-1) --> v(1-0) is observed. This can explain the high intrinsic efficiency obtained. Specific output of the discharge HF laser over 8 J/L (140 J/L x atm) andtotal laser efficiency eta(t) similar to 4.5% were achieved. For the discharge DF laser, specific output and total efficiency were as high as 6.5 J/L and 3.2%, respectively. [References: 25]
机译:研究了由径向会聚或平面电子束和自持放电引发的非链式化学反应泵浦的HF(DF)激光器的光谱和幅度时间参数。两种激发方法都获得了高达10%的HF激光器本征效率。结果表明,由于同时形成了原子和分子氟以及F-2参与了人口反转,因此可以实现电子束引发的HF激光的高效率。激光脉冲具有复杂的轮廓,这是由P线的连续生成以及相同振动带和各个振动带的两条旋转线的辐射脉冲期间的重叠引起的。确定了提供放电非链式HF(DF)激光器的高固有效率的实验条件。使用SF6-H-2(D-2)混合物中的感应和LC发生器激发,分别获得高达eta(in)分别接近10%和7%的HF和DF激光器的本征效率。通过使用特殊形状的电极以及均匀的紫外线预电离获得的高放电均匀性是提高放电HF(DF)激光器固有效率的关键参数。发现在这种激发条件下,HF激光的输出光谱显着加宽,并且在HF分子振动跃迁的某些旋转线上的级联激光作用v(3-2)-> v(2-1)-> v(1-0)被观察到。这可以解释获得的高固有效率。放电HF激光的特定输出超过8 J / L(140 J / L x atm),总激光效率eta(t)接近4.5%。对于放电DF激光器,单位输出功率和总效率分别高达6.5 J / L和3.2%。 [参考:25]

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