【24h】

Characterisation of plasma mirrors on the HELEN laser infra red CPA beam

机译:HELEN激光红外CPA光束上的等离子镜特征

获取原文
获取原文并翻译 | 示例

摘要

The performance of plasma mirrors has been characterised on the HELEN laser infra-red, chirped pulse amplification [CPA] beam line. This laser produced pulse energies up to 100J with pulse lengths of ~500fs. Plasma mirrors are initially low reflectance surfaces that transmit low intensity light but produce a reflecting plasma surface when exposed to high irradiance beams. Typically they are formed by transparent substrates at the laser wavelength and have been used either uncoated or with anti-reflection coatings. The coatings evaluated in these experiments were either multi-layer dielectrics or single layer sol-gel silica. Some of the fused silica substrates were coated on both faces, others were coated on the incident face only and a small number were used uncoated. The reflectance of the plasma mirrors was measured as a function of incident energy. A vacuum compatible pyro-electric sensor in conjunction with either a diffuser or neutral density filter was used to measure incident and reflected laser energy. Both the diffuser and filter could suffer laser damage at the highest incident energies available. The morphology of the damage of the different components and coating combinations was studied as a function of incident beam energy. The mirrors were being investigated to prevent pre-pulse effects in plasma physics experiments and increase the intensity contrast ratio of the laser beam incident onto solid targets. Their proximity to the laser target also allowed them to block debris and shrapnel arising from the laser matter interaction in some directions. These material emissions spread uncontrollably in the evacuated target chamber and may cause contamination of laser optics and filters or radiation diagnostic instrumentation. The plasma mirror components were operated at 45 degrees angle of incidence and an average input beam diameter of 5.5 millimetres at the mirrors with incident beam irradiances in the range 50 TW/cm~2 to 540 TW/cm~2. The reflected beams were focussed on to 10 micron thick, 10mm diameter metal foils and 3mm diameter polymer/metal targets with a thickness of 2 to 18 microns. The subsequent debris and shrapnel effects were studied using post shot microscopy and photography.
机译:等离子镜的性能已在HELEN激光红外,chi脉冲放大[CPA]光束线上表征。该激光产生的脉冲能量高达100J,脉冲长度约为500fs。等离子镜最初是低反射率的表面,可以透射低强度的光,但是当暴露于高辐照光束时会产生反射的等离子表面。通常,它们是由处于激光波长的透明基板形成的,并且未经涂覆或与抗反射涂层一起使用。在这些实验中评估的涂层是多层电介质或单层溶胶-凝胶二氧化硅。一些熔融二氧化硅基材在两个面上都进行了涂层,而其他仅在入射面上进行了涂层,而少量则未经涂层使用。测量等离子体镜的反射率作为入射能量的函数。与扩散器或中性密度滤光片结合使用的真空兼容热释电传感器用于测量入射和反射激光能量。扩散器和滤光片都可能在可用的最高入射能量下遭受激光损坏。研究了不同组分和涂层组合的损伤形态随入射光束能量的变化。正在研究这些反射镜,以防止在等离子体物理实验中产生预脉冲效应,并增加入射到固体目标上的激光束的强度对比度。它们与激光目标的接近也使它们能够阻挡在某些方向上由于激光物质相互作用而产生的碎屑和碎片。这些物质的散发在抽空的靶腔内不受控制地扩散,并可能导致激光光学器件和滤光片或辐射诊断仪器的污染。等离子镜组件在入射角为50 TW / cm〜2到540 TW / cm〜2的范围内以45度入射角和5.5 mm的平均输入光束直径工作。反射光束聚焦在厚度为2至18微米的10微米厚,直径为10mm的金属箔和3mm直径的聚合物/金属靶上。随后的碎屑和弹片效应使用后显微照片和照相技术进行了研究。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号