论文标题

由热活化的选择性地形平衡制造的燃烧反射光栅的极端紫外线和软X射线衍射效率

Extreme Ultraviolet and Soft X-Ray Diffraction Efficiency of a Blazed Reflection Grating Fabricated by Thermally Activated Selective Topography Equilibration

论文作者

McCoy, Jake A., McEntaffer, Randall L., Miles, Drew M.

论文摘要

利用反射光谱仪进行极端紫外线(EUV)和柔软的X射线(SXR)光谱的未来观测值需要高效率的光栅,并具有燃烧的凹槽刻面和通常扇形的定制凹槽布局,这些布局通常被扇形或略微弯曲。虽然以单晶硅的湿各向异性蚀刻为中心的制造程序产生了高效的燃烧光栅,但非平行凹槽布局的精度受到硅晶体的立方结构的限制。这激发了追求替代技术来进行光栅生产,即热活化的选择性形态平衡(口味),该技术使用灰度电子束光刻来模式以抗性的多级结构进行抗拒的多级结构,然后是优化的聚合物热回流,以将3D模式平滑为连续的表面浮雕介绍。使用味道,将霉菌定期为400 nm,凹槽与不对称的锯齿状的凹槽,以130 nm厚的聚(甲基甲基丙烯酸甲酯)在50 mm的硅底物上抗性130 nm厚的聚(甲基丙烯酸甲酯)抗性。通过使用钛作为粘附层的电子梁物理蒸气沉积,将这种结构覆盖15 nm的金,然后在高级光源同步器设备的光束线6.3.2上测试EUV和SXR衍射效率。结果证明了27度大火角的准闪电响应特征,凹槽面平滑至1.5 nm rms。绝对峰值效率范围从75%到25%,而总相对效率在15.5 nm> 1.55 nm的测得的带通中的GAP90%范围为90%。

Future observatories utilizing reflection grating spectrometers for extreme ultraviolet (EUV) and soft X-ray (SXR) spectroscopy require high-fidelity gratings with both blazed groove facets and custom groove layouts that are often fanned or feature a slight curvature. While fabrication procedures centering on wet anisotropic etching in monocrystalline silicon produce highly efficient blazed gratings, the precision of a nonparallel groove layout is limited by the cubic structure of the silicon crystal. This motivates the pursuit of alternative techniques to grating manufacture, namely thermally activated selective topography equilibration (TASTE), which uses gray-scale electron-beam lithography to pattern multilevel structures in resist followed by an optimized polymer thermal reflow to smooth the 3D patterns into continuous surface relief profiles. Using TASTE, a mold for a reflection grating with a periodicity of 400 nm and grooves resembling an asymmetric sawtooth was patterned in 130 nm thick poly(methyl methacrylate) resist on a silicon substrate over a 50 mm by 7.5 mm area. This structure was coated with 15 nm of gold by electron-beam physical vapor deposition using titanium as an adhesion layer and then tested for EUV and SXR diffraction efficiency at beamline 6.3.2 of the Advanced Light Source synchrotron facility. Results demonstrate a quasi-blaze response characteristic of a 27 degree blaze angle with groove facets smooth to 1.5 nm rms. Absolute peak-order efficiency ranges from 75% to 25%, while total relative efficiency measures gap90% across the measured bandpass of 15.5 nm > lambda > 1.55 nm.

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