首页> 外文会议>EUV and X-ray optics: Synergy between laboratory and space II >Multilayer coatings for the far and extreme ultraviolet
【24h】

Multilayer coatings for the far and extreme ultraviolet

机译:用于远紫外线和远紫外线的多层涂料

获取原文
获取原文并翻译 | 示例

摘要

We present the development of novel coatings for the far and extreme ultraviolet (FUV-EUV). In the EUV above ~50 nm, the strong absorption of materials has precluded the development of narrowband coatings. An extensive research has been performed on the search and characterization of new materials with low absorption; the lanthanide series has been found to be a source of materials with relatively low absorption in the range of interest. The discovery of a wealth of materials with relatively low EUV absorption is basic to develop efficient multilayers, particularly with narrowband properties. In this way, we have developed multilayers based on Yb, Al, and SiO with narrowband performance in the 50-92 nm range; these are first narrowband coatings peaked above 70 nm. Our recent research on multilayers based on Eu, Al, and SiO provide promising results, with an increase in the peak reflectance versus Yb/Al/SiO multilayers, along with a peak wavelength that can be extended up to ~100 nm. For applications where FUV-EUV narrowband coatings have not been able to be prepared, we can design multilayers that address specific purposes, such as maximizing the reflectance ratio at two wavelengths or bands. Our first goal in this direction is the development of coatings with high 102.6 nm/ 121.6 nm reflectance ratio. Calculations predict that a high reflectance at Lyman β with a good rejection at Lyman α can be obtained through multilayer coatings. We are at the beginning of experimental research for this goal
机译:我们介绍了用于远紫外线和远紫外线(FUV-EUV)的新型涂料的开发。在〜50 nm以上的EUV中,材料的强吸收性阻止了窄带涂层的发展。已经对低吸收性新材料的搜索和表征进行了广泛的研究。已发现镧系元素是感兴趣范围内吸收率相对较低的材料来源。大量具有极低EUV吸收率的材料的发现是开发高效多层膜的基础,特别是具有窄带特性的多层膜。通过这种方式,我们开发了基于Yb,Al和SiO的多层材料,其窄带性能在50-92 nm范围内。这些是在70 nm以上达到峰值的第一个窄带涂层。我们最近对基于Eu,Al和SiO的多层膜的研究提供了可喜的结果,与Yb / Al / SiO多层膜相比,其峰值反射率有所提高,并且峰值波长可以扩展到约100 nm。对于无法制备FUV-EUV窄带涂层的应用,我们可以设计满足特定目的的多层,例如最大化两个波长或波段的反射率。我们在这个方向上的首要目标是开发具有高102.6 nm / 121.6 nm反射比的涂层。计算预测,可以通过多层涂层获得在Lymanβ处的高反射率和在Lymanα处的良好反射率。我们正在为此目的进行实验研究

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