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Liquid crystal films as on-demand, variable thickness (50–5000 nm) targets for intense lasers

机译:液晶膜可作为按需,可变厚度(50-5000 nm)的目标,用于强激光

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摘要

We have developed a new type of target for intense laser-matter experiments that offers significant advantages over those currently in use. The targets consist of a liquid crystal film freely suspended within a metal frame. They can be formed rapidly on-demand with thicknesses ranging from nanometers to micrometers, where the particular value is determined by the liquid crystal temperature and initial volume as well as by the frame geometry. The liquid crystal used for this work, 8CB (4′-octyl-4-cyanobiphenyl), has a vapor pressure below 10~(-6) Torr, so films made at atmospheric pressure maintain their initial thickness after pumping to high vacuum. Additionally, the volume per film is such that each target costs significantly less than one cent to produce. The mechanism of film formation and relevant physics of liquid crystals are described, as well as ion acceleration data from the first shots on liquid crystal film targets at the Ohio State University Scarlet laser facility.
机译:我们已经开发出一种用于强激光物质实验的新型靶材,与目前使用的靶材相比具有明显的优势。靶包括自由悬浮在金属框架内的液晶膜。它们可以按需快速形成,厚度范围从纳米到微米,其中特定值由液晶温度和初始体积以及框架几何形状确定。用于这项工作的液晶8CB(4'-辛基-4-氰基联苯)的蒸气压低于10〜(-6)Torr,因此在大气压下制得的薄膜在抽至高真空后仍保持其初始厚度。另外,每部电影的体积要使每个目标成本大大低于1美分。描述了薄膜的形成机理和液晶的相关物理原理,以及俄亥俄州立大学猩红色激光设备对液晶薄膜靶材的第一枪的离子加速度数据。

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