Heilmann Ralf K, Ahn Minseung, Bruccoleri Alex, Chang Chih-Hao, Gullikson Eric M, Mukherjee Pran, Schattenburg Mark L
Space Nanotechnology Laboratory, MIT Kavli Institute for Astrophysics and Space Research, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, Massachusetts 02139, USA.
Appl Opt. 2011 Apr 1;50(10):1364-73. doi: 10.1364/AO.50.001364.
We report on measurements of the diffraction efficiency of 200-nm-period freestanding blazed transmission gratings for wavelengths in the 0.96 to 19.4 nm range. These critical-angle transmission (CAT) gratings achieve highly efficient blazing over a broad band via total external reflection off the sidewalls of smooth, tens of nanometer thin ultrahigh aspect-ratio silicon grating bars and thus combine the advantages of blazed x-ray reflection gratings with those of more conventional x-ray transmission gratings. Prototype gratings with maximum depths of 3.2 and 6 μm were investigated at two different blaze angles. In these initial CAT gratings the grating bars are monolithically connected to a cross support mesh that only leaves less than half of the grating area unobstructed. Because of our initial fabrication approach, the support mesh bars feature a strongly trapezoidal cross section that leads to varying CAT grating depths and partial absorption of diffracted orders. While theory predicts broadband absolute diffraction efficiencies as high as 60% for ideal CAT gratings without a support mesh, experimental results show efficiencies in the range of ∼50-100% of theoretical predictions when taking the effects of the support mesh into account. Future minimization of the support mesh therefore promises broadband CAT grating absolute diffraction efficiencies of 50% or higher.
我们报告了周期为200纳米的独立闪耀透射光栅在0.96至19.4纳米波长范围内的衍射效率测量结果。这些临界角透射(CAT)光栅通过在光滑的、几十纳米厚的超高纵横比硅光栅条侧壁上的全外反射,在宽带范围内实现了高效闪耀,从而将闪耀X射线反射光栅的优点与更传统的X射线透射光栅的优点结合起来。研究了最大深度为3.2微米和6微米的原型光栅在两种不同闪耀角下的情况。在这些初始的CAT光栅中,光栅条与一个交叉支撑网整体相连,该支撑网仅使不到一半的光栅面积无阻碍。由于我们最初的制造方法,支撑网条具有强烈的梯形横截面,这导致CAT光栅深度变化以及衍射级次的部分吸收。虽然理论预测对于没有支撑网的理想CAT光栅,宽带绝对衍射效率高达60%,但考虑到支撑网的影响,实验结果表明效率在理论预测值的约50 - 100%范围内。因此,未来支撑网的最小化有望实现50%或更高的宽带CAT光栅绝对衍射效率。