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Evolution of spatial and energy characteristics conically divergent beams in the XeF(C-A) amplifier

机译:XEF(C-A)放大器中的空间和能量特性的进化圆柱发散梁

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Evolution of spatial and energy characteristics start pulse with energy of 0.8 mJ in duration of 2 ps in the XeF(C-A) amplifier of THL-100 laser system have been studied experimentally and by numerical simulation. Laser radiation energy E = 2 J was obtained experimentally. In that work we present the 3D-model amplification of conically diverging laser beams, that takes into account the spatial inhomogeneity of the pump, and the geometry of THL-100 laser system amplifier. Description and the test results of the model are submitted. At the start pulse energy 0.8 mJ, the calculated radiation energy at the XeF(C-A) output reaches 2.4 J. Simulation results shows that, maximal intensity of the laser radiation in this mode reaches P = 60 GW/cm~2. The evolution of the energy and space-time structure of the laser beam in the amplifier was investigated. It is shown that in the ideal case (excluding the processes of nonlinear interaction of laser beam with an active medium), at the start pulse energy of 5 mJ, the energy of the laser radiation at the output of the amplifier is increased to E_(out) = 3.8 J. In this mode, the maximal radiation intensity reaches a value of I = 148 GW/cm~2.
机译:通过实验研究,通过数值模拟研究了在XEF(C-A)放大器中的持续时间为0.8MJ的空间和能量特性的进化脉冲0.8MJ的能量。通过实验获得激光辐射能量E = 2 j。在该工作中,我们介绍了圆锥发散的激光束的3D模型放大,这考虑了泵的空间不均匀性,以及THL-100激光系统放大器的几何形状。描述和模型的测试结果已提交。在开始脉冲能量0.8MJ,XEF(C-A)输出的计算辐射能量达到2.4 J.仿真结果表明,这种模式下激光辐射的最大强度达到P = 60 GW / cm〜2。研究了放大器中激光束的能量和时空结构的演变。结果表明,在理想情况下(不包括激光束的非线性相互作用的过程,在有源介质的启动脉冲中,在5MJ的启动脉冲能中,放大器输出时激光辐射的能量增加到E_(出)= 3.8 J.在此模式下,最大辐射强度达到I = 148 GW / cm〜2的值。

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