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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >USING LOW AND HIGH PREPULSES TO ENHANCE THE J=0-1 TRANSITION AT 19.6 NM IN THE NE-LIKE GERMANIUM XUV LASER
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USING LOW AND HIGH PREPULSES TO ENHANCE THE J=0-1 TRANSITION AT 19.6 NM IN THE NE-LIKE GERMANIUM XUV LASER

机译:在类似锗XUV激光中使用低和高剂量的粉末来增强19.6海里处的J = 0-1跃迁

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We report a study of the effect of prepulses on XUV lasing of Ne-like germanium for an irradiation geometry where approximate to 20 mm long germanium slab targets were irradiated at approximate to 1.6 x 10(13) W cm(-2) using approximate to 0.7 ns (1.06 mu m) pulses from the VULCAN glass laser. Prepulses were generated at fractional power levels of approximate to 2 x 10(-4) (low) and approximate to 2 x 10(-2) (high) and arrived on target 5 and 3.2 ns respectively in advance of the main heating pulse, For both the low and high prepulses the output of the 3p-3s, J = 0-1, line at 19.6 nm was enhanced such that the peak radiant density (J/st) for this line became greater than that for the normally stronger J = 2-1 lines at 23.2 and 23.6 nm. The J = 0-1 line, whose FWHM duration was reduced from approximate to 450 ps to approximate to 100 ps, delivered approximate to 6 x more power (W) than the average for the combined J = 2-1 lines, whose FWHM duration was approximate to 500 ps for both levels of prepulse, The higher prepulse was more effective, yielding approximate to 2 x more radiant density and approximate to 7 x more power on both the J = 0-1 and J = 2-1 transitions compared to the low prepulse case, The most dramatic observation overall was the approximate to 40 x increase of power in the J = 0-1 line for the high prepulse (approximate to 2%) case compared with the zero prepulse case. These observations, coupled with measurements of beam divergence and beam deviation through refractive bending, as well as general agreement with modelling, lead us to conclude that, for germanium, the main influence of the prepulse is (a) to increase the energy absorbed from the main pulse, (b) to increase the volume of the gain zone and (c) to relax the plasma density gradients, particularly in the J = 0-1 gain zone. [References: 30]
机译:我们报告了一个预脉冲对Ne-状锗的XUV激光发射的影响,该辐射几何形状在大约1.6 x 10(13)W cm(-2)的情况下,以大约20 mm长的锗平板靶辐照了大约20 mm长的锗平板靶。来自VULCAN玻璃激光器的0.7 ns(1.06μm)脉冲。在大约2 x 10(-4)(低)和大约2 x 10(-2)(高)的分数功率水平下产生预脉冲,并分别在主加热脉冲之前到达目标5 ns和3.2 ns,对于低和高预脉冲,3p-3s的输出(J = 0-1)在19.6 nm处的输出都得到增强,因此该线的峰值辐射密度(J / st)变得比通常更强的J更大。在23.2和23.6 nm处= 2-1条线。 J = 0-1线(其FWHM持续时间从大约450 ps减少到大约100 ps),比J = 2-1线(其FWHM持续时间)的平均值要高出约6倍两种预脉冲电平均约为500 ps,较高的预脉冲更有效,与相比,J = 0-1和J = 2-1跃迁产生的辐射密度大约高2倍,辐射功率高7倍左右。在低预脉冲情况下,最显着的观察结果是,与零预脉冲情况相比,高预脉冲(大约2%)情况下,J = 0-1线功率提高了约40倍。这些观察结果,加上通过折射弯曲对光束发散度和光束偏差的测量,以及与建模的总体一致性,使我们得出结论,对于锗,预脉冲的主要影响是(a)增加从光子吸收的能量。主脉冲,(b)增加增益区的体积,(c)放宽等离子体密度梯度,特别是在J = 0-1增益区中。 [参考:30]

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