Scott G G, Mariscal D A, Canning D, Heeter R F, Krieger M, Wallace R J, McGuffey C, Peebles J L, Simpson R A, Stoeckl C, Ma T
Lawrence Livermore National Laboratory, Livermore, California 94550, USA.
Laboratory for Laser Energetics, University of Rochester, Rochester, New York 14623-1299, USA.
Rev Sci Instrum. 2022 Apr 1;93(4):043006. doi: 10.1063/5.0067467.
A plasma mirror platform was developed for the OMEGA-EP facility to redirect beams, thus enabling more flexible experimental configurations as well as a platform that can be used in the future to improve laser contrast. The plasma mirror reflected a short pulse focusing beam at 22.5° angle of incidence onto a 12.5 μm thick Cu foil, generating Bremsstrahlung and k x rays, and accelerating ions and relativistic electrons. By measuring these secondary sources, the plasma mirror key performance metrics of integrated reflectivity and optical quality are inferred. It is shown that for a 5 ± 2 ps, 310 J laser pulse, the plasma mirror integrated reflectivity was 62 ± 13% at an operating fluence of 1670 J cm, and that the resultant short pulse driven particle acceleration and x-ray generation indicate that the on target intensity was 3.1 × 10 W cm, which is indicative of a good post-plasma mirror interaction beam optical quality. By deriving the plasma mirror performance metrics from the secondary source scalings, it was simultaneously demonstrated that the plasma mirror is ready for adoption in short pulse particle acceleration and high energy photon generation experiments using the OMEGA-EP system.
为欧米伽 - EP 装置开发了一种等离子体镜平台,用于重定向光束,从而实现更灵活的实验配置,并打造一个未来可用于提高激光对比度的平台。该等离子体镜以 22.5°入射角将短脉冲聚焦光束反射到一块 12.5 微米厚的铜箔上,产生轫致辐射和 K 系 X 射线,并加速离子和相对论电子。通过测量这些次级源,可以推断出等离子体镜的综合反射率和光学质量等关键性能指标。结果表明,对于一个 5 ± 2 皮秒、310 焦耳的激光脉冲,在 1670 焦耳/平方厘米的工作通量下,等离子体镜的综合反射率为 62 ± 13%,并且由此产生的短脉冲驱动粒子加速和 X 射线生成表明,靶到达靶靶上强度为 3.1 × 10 瓦/平方厘米,这表明等离子体镜与光束相互作用后的光学质量良好。通过从次级源标度推导等离子体镜的性能指标,同时证明了该等离子体镜已准备好应用于使用欧米伽 - EP 系统的短脉冲粒子加速和高能光子生成实验。