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Experiment and simulation of novel liquid crystal plasma mirrors for high contrast, intense laser pulses

机译:用于高对比度,强激光脉冲的新型液晶等离子体镜的实验与仿真

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We describe the first demonstration of plasma mirrors made using freely suspended, ultra-thin films formed dynamically and in-situ. We also present novel particle-in-cell simulations that for the first time incorporate multiphoton ionization and dielectric models that are necessary for describing plasma mirrors. Dielectric plasma mirrors are a crucial component for high intensity laser applications such as ion acceleration and solid target high harmonic generation because they greatly improve pulse contrast. We use the liquid crystal 8CB and introduce an innovative dynamic film formation device that can tune the film thickness so that it acts as its own antireflection coating. Films can be formed at a prolonged, high repetition rate without the need for subsequent realignment. High intensity reflectance above 75% and low-field reflectance below 0.2% are demonstrated, as well as initial ion acceleration experimental results that demonstrate increased ion energy and yield on shots cleaned with these plasma mirrors.
机译:我们描述了使用自由悬浮的动态和原位形成的超薄薄膜制作的等离子镜的首次演示。我们还提出了新颖的单元中粒子模拟,首次将多光子电离和介电模型纳入描述等离子镜所需的模型。介电等离子体镜是高强度激光应用(如离子加速度和固体目标高次谐波产生)的重要组成部分,因为它们极大地改善了脉冲对比度。我们使用液晶8CB并引入了创新的动态成膜装置,该装置可以调节膜厚,使其充当其自身的抗反射涂层。可以以延长的高重复率形成膜,而无需随后的重新对准。证明了高于75%的高强度反射率和低于0.2%的低视场反射率,以及初步的离子加速实验结果,这些结果证明了用这些等离子镜清洁的镜头提高了离子能量和产率。

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