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Enhancement of diffraction efficiency via higher-order operation of a multilayer blazed grating

机译:通过多层闪耀光栅的高阶操作提高衍射效率

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摘要

Imperfections in the multilayer stack deposited on a saw-tooth substrate are the main factor limiting the diffraction efficiency of extreme ultraviolet and soft x-ray multilayer-coated blazed gratings (MBGs). Since the multilayer perturbations occur in the vicinity of antiblazed facets of the substrates, reduction of the groove density of MBGs is expected to enlarge the area of unperturbed multilayer and result in higher diffraction efficiency. At the same time the grating should be optimized for higher-order operation in order to keep high dispersion and spectral resolution. In this work we show the validity of this approach and demonstrate significant enhancement of diffraction efficiency of MBGs using higher-order diffraction. A new record for diffraction efficiency of 52% in the second diffraction order was achieved for an optimized MBG with groove density of 2525 lines/mm at the wavelength of 13.4 nm.
机译:沉积在锯齿形基材上的多层堆叠中的缺陷是限制极紫外和软X射线多层涂层闪耀光栅(MBG)衍射效率的主要因素。由于多层扰动发生在基板的非闪耀小面附近,因此,MBGs的沟槽密度的降低有望扩大未扰动多层的面积并导致更高的衍射效率。同时,应针对更高阶的操作优化光栅,以保持高色散和光谱分辨率。在这项工作中,我们证明了这种方法的有效性,并证明了使用高阶衍射显着提高了MBG的衍射效率。对于优化的MBG,在13.4 nm波长处具有2525线/ mm的凹槽密度,获得了第二衍射级衍射效率达到52%的新记录。

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