Chapman H N, Bajt S
Center for Free-Electron Laser Science, Notkestrasse 85, 22607 Hamburg, Germany.
The Hamburg Centre for Ultrafast Imaging, Universität Hamburg, Luruper Chaussee 149, 22761 Hamburg, Germany.
Proc Math Phys Eng Sci. 2021 Jul 28;477(2251):20210334. doi: 10.1098/rspa.2021.0334. Epub 2021 Jul 14.
Achromatic focusing systems for hard X-rays are examined which consist of a refractive lens paired with a diffractive lens. Compared with previous analyses, we take into account the behaviour of thick refractive lenses, such as compound refractive lenses and waveguide gradient index refractive lenses, in which both the focal length and the position of the principal planes vary with wavelength. Achromatic systems formed by the combination of such a thick refractive lens with a multilayer Laue lens are found that can operate at a focusing resolution of about 3 nm, over a relative bandwidth of about 1%. With the appropriate distance between the refractive and diffractive lenses, apochromatic systems can also be found, which operate over relative bandwidth greater than 10%. These systems can be used to focus short pulses without distorting them in time by more than several attoseconds. Such systems are suitable for high-flux scanning microscopy and for creating high intensities from attosecond X-ray pulses.
研究了用于硬X射线的消色差聚焦系统,该系统由一个折射透镜与一个衍射透镜配对组成。与之前的分析相比,我们考虑了厚折射透镜的行为,例如复合折射透镜和波导梯度折射率折射透镜,其中焦距和主平面的位置都随波长而变化。发现由这种厚折射透镜与多层劳厄透镜组合形成的消色差系统可以在约3纳米的聚焦分辨率下工作,相对带宽约为1%。在折射透镜和衍射透镜之间有适当距离时,也可以找到复消色差系统,其工作的相对带宽大于10%。这些系统可用于聚焦短脉冲,而不会使其在时间上失真超过几个阿秒。此类系统适用于高通量扫描显微镜以及从阿秒X射线脉冲产生高强度。