...
首页> 外文期刊>Review of Scientific Instruments >Laser-plasma debris from a rotating cryogenic–solid-Xe target
【24h】

Laser-plasma debris from a rotating cryogenic–solid-Xe target

机译:来自旋转低温-固体Xe靶的激光等离子体碎片

获取原文
获取原文并翻译 | 示例
           

摘要

We investigate the characteristics of laser plasma debris that is responsible for damaging optics. The debris is composed of fast ions, neutral particles, and fragments, and originates from a solid Xe target on a rotating drum that we developed as an extreme ultraviolet (EUV) source. The ice fragments appear to be a problem most notably with solid Xe targets; however, we find that the damage induced by Xe ice fragments can be avoided by simply reducing the laser pulse energy. We find the number of fast neutral particles to be an order of magnitude less than the number of ions, and we clarify that the plasma debris is primarily composed of fast ions. In addition, we find that the number of fast ions having a few dozen keV of energy decreases when using the rotating target compared with the rest target. We attribute this to a gas curtain effect from the Xe gas localized at the rotating target surface. We estimate the sputtering rate of the Mo/Si mirror, which is caused primarily by the fast ions, to be 104 nm/1×106 shots at 190 mm from the source plasma and at an 11.25° angle from the incident laser beam. Up to the 1×106 shots exposure, remarkable degradation of the mirror reflectivity is not observed though the sputtering damages the mirror. Mitigation of the ions by using gas and/or magnetic fields will further improve the mirror lifetime. By comparing with a liquid jet Xe target, we conclude that the sputtering rate per conversion efficiency when using the solid Xe targets on the rotating drum is the same as that when using the liquid Xe targets. The high conversion efficiency of 0.9% in the rotating drum solid Xe target makes this technique useful for developing laser plasma EUV sources. © 2010 American Institute of Physics Article Outline INTRODUCTION EXPERIMENTAL SETUP RESULTS AND DISCUSSION Ions Neutral particles Fragment damage Mo/Si mirror damage SUMMARY
机译:我们调查了造成激光损坏的激光等离子体碎片的特征。碎片由快速离子,中性粒子和碎片组成,并且源自旋转鼓上的固体Xe目标,我们将其开发为极紫外(EUV)源。对于固体Xe靶,冰碎片似乎是一个最明显的问题。然而,我们发现通过简单地降低激光脉冲能量可以避免Xe冰碎片引起的破坏。我们发现快速中性粒子的数量比离子数量少一个数量级,并且我们澄清了等离子体碎片主要由快速离子组成。另外,我们发现,与静止靶相比,使用旋转靶时具有数十keV能量的快速离子的数量减少。我们将其归因于来自定位在旋转目标表面的氙气的气幕效应。我们估计,主要由快速离子引起的Mo / Si镜的溅射速率是在距源等离子体190 mm处以及与入射光成11.25°角处进行104 nm / 1×106 发射激光束。直到1×106 镜头曝光,尽管溅射会损坏反射镜,但仍未观察到反射镜反射率的显着降低。通过使用气体和/或磁场来减轻离子将进一步提高反射镜的寿命。通过与液体Xe靶进行比较,我们得出的结论是,在旋转鼓上使用固体Xe靶时,单位转化效率的溅射速率与使用液体Xe靶时相同。旋转鼓式固体Xe靶材的0.9%的高转换效率使该技术可用于开发激光等离子体EUV源。 ©2010美国物理研究所文章大纲简介实验设置结果与讨论离子中性粒子碎片损坏Mo / Si镜面损坏摘要

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