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Numerical Analysis of Plasma Medium of a Fully Coherent X-Ray Laser

机译:完全相干X射线激光器等离子体介质的数值分析

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Two-dimensional (2D) radiation hydrodynamics simulations have been performed to investigate the generation and the refraction influence in the plasma medium of a fully coherent x-ray laser at 13.9 nm by the double-target configuration. The local energy deposition of the main laser pulse generates a blast wave near the critical density surface and the density dip structure is gradually formed behind the blast wave. The size of the density dip structure is about 10 urn after 50 ps of the main pulse. The three-dimension (3D) ray-trace calculation using the result of the 2D simulation shows the x-rays pass through the density dip with less refraction. The size and the position of the density dip area are similar to the light source of the fully coherent x-ray laser.
机译:已经进行了二维(2D)辐射流体动力学模拟以研究通过双靶构造在13.9nm处的完全相干X射线激光器的等离子体介质中的产生和折射影响。主激光脉冲的局部能量沉积在临界密度表面附近产生冲压波,并且密度浸结构逐渐形成在冲浪波后面。在主脉冲的50 ps后,密度浸结构的尺寸约为10瓮。使用2D仿真结果的三维(3D)射线轨迹计算显示X射线通过密度倾斜,折射较小。密度浸区的尺寸和位置类似于完全相干X射线激光器的光源。

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