Opt Express. 2022 Nov 21;30(24):43491-43502. doi: 10.1364/OE.475945.
A counter-propagating laser-beam platform using a spherical plasma mirror was developed for the kilojoule-class petawatt LFEX laser. The temporal and spatial overlaps of the incoming and redirected beams were measured with an optical interferometer and an x-ray pinhole camera. The plasma mirror performance was evaluated by measuring fast electrons, ions, and neutrons generated in the counter-propagating laser interaction with a Cu-doped deuterated film on both sides. The reflectivity and peak intensity were estimated as ∼50% and ∼5 × 10 W/cm, respectively. The platform could enable studies of counter-streaming charged particles in high-energy-density plasmas for fundamental and inertial confinement fusion research.
一个使用球形等离子体反射镜的反向传播激光平台,已被开发用于千焦耳级 petawatt LFEX 激光。利用光学干涉仪和 X 射线针孔相机测量了输入光束和重定向光束的时间和空间重叠。通过测量在反向传播激光相互作用下,两侧掺杂有铜的氘化薄膜中产生的快电子、离子和中子,评估了等离子体反射镜的性能。反射率和峰值强度分别估计约为 50%和 5×10 W/cm。该平台可以为高能密度等离子体中的对流向流带电粒子研究提供支持,这对基础和惯性约束聚变研究具有重要意义。