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Design of axisymmetric multi-mirror grazing incidence system to increase the numerical aperture of neutron and X-ray microscopes

机译:设计轴对称多镜掠入射系统以增加中子和X射线显微镜的数值孔径

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摘要

An axisymmetric multi-mirror system for neutron and X-ray microscopes is proposed to increase their numerical aperture and collection efficiency. A Wolter type-I mirror is used as the basis of the multi-mirror system at grazing incidence. The addition of an even number of hyperboloid mirrors to the Wolter type-I mirror can satisfy both an equal optical path length and Abbe's sine condition. The numerical aperture increases in proportion to the number of mirrors. The optical parameters of the system with four tandem mirrors are calculated for neutrons and X-rays with a wavelength of 0.4 nm by assuming that the average grazing angle of incidence is 5.4 mrad and the magnification is 10. The inner diameters of the mirrors are limited to <10 mm considering the total length of the optical system. Tolerance of off-axis distance was calculated using a ray-tracing computer simulation. Ray tracing shows that a blur size <14 nm will be possible at an off-axis displacement of 10 mu m.
机译:提出了一种用于中子和X射线显微镜的轴对称多镜系统,以提高其数值孔径和收集效率。 Wolter I型镜被用作掠入射时多镜系统的基础。在I型沃尔特镜中增加偶数个双曲面镜可以满足相等的光程长度和阿贝正弦条件。数值孔径与反射镜的数量成比例地增加。假设平均入射掠角为5.4 mrad,放大倍数为10,则对于具有0.4 nm波长的中子和X射线,将计算具有四个串联镜的系统的光学参数。镜的内径受到限制考虑到光学系统的总长度,应小于10 mm。离轴距离的公差是使用光线跟踪计算机模拟来计算的。射线追踪表明,离轴位移为10μm时,模糊大小<14 nm是可能的。

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