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Optimized short kinoform lenses for hard X-ray nano-focusing

机译:经过优化的短Kinoform镜片,可实现硬X射线纳米聚焦

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An optimized structure of the short kinoform lens (KL) for hard X-ray nano-focusing is presented. By modifying the lower and upper surfaces of the conventional short KL, the focusing performance is improved largely. Unlike the conventional short KLs, whose effective numerical aperture (NA) is limited by the edge diffraction effects and multi-wave scattering, the optimized short KL, is capable of achieving diffraction-limited focusing. The Takagi-Taupin description (TTD) of X-ray dynamical diffraction theory is employed to investigate the diffractive properties of the optimized short KL When the harmonic number equals 1, the optimized short KL could be treated as a diffractive lens, whose effective NA could exceed the critical angle limit. According to their different focusing properties, the lens aperture could be divided into three regions, namely the refraction region, the transition region and the resonance region. As a comparison, with a large harmonic number, the optimized short KL behaves more like a refractive lens and its effective NA is restricted by the critical angle limit. By choosing appropriate harmonic number, maximum duty cycle and maximum propagation ratio, the difficulty in fabricating the proposed lens structure could be alleviated greatly without degrading the focusing performance obviously. This study indicates that, besides the arrangement of lens segments, their shapes are also important. The simulation results demonstrate that a short KL is also a potential candidate for hard X-ray nano-focusing. (C) 2014 Elsevier B.V. All rights reserved.
机译:提出了一种用于硬X射线纳米聚焦的短kinoform透镜(KL)的优化结构。通过修改常规短KL的下表面和上表面,大大提高了聚焦性能。与传统短KL的有效数值孔径(NA)受边缘衍射效应和多波散射限制的情况不同,优化后的短KL能够实现衍射限制的聚焦。利用X射线动力学衍射理论的Takagi-Taupin描述(TTD)研究了优化短KL的衍射特性。当谐波数等于1时,可以将优化短KL视为衍射透镜,其有效NA可以超过临界角限制。根据其不同的聚焦特性,可以将透镜光圈分为三个区域,即折射区域,过渡区域和共振区域。相比之下,谐波次数大时,优化的短KL表现得更像折射透镜,并且其有效NA受临界角度限制。通过选择合适的谐波数,最大占空比和最大传播比,可以大大减轻制造所提出的透镜结构的难度,而不会明显降低聚焦性能。这项研究表明,除了透镜段的布置以外,它们的形状也很重要。仿真结果表明,短KL也是硬X射线纳米聚焦的潜在候选者。 (C)2014 Elsevier B.V.保留所有权利。

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