Chapman Henry N, Prasciolu Mauro, Murray Kevin T, Lukas Dresselhaus J, Bajt Saša
Opt Express. 2021 Feb 1;29(3):3097-3113. doi: 10.1364/OE.413916.
Multilayer Laue lenses are diffractive optics for hard X-rays. To achieve high numerical aperture and resolution, diffracting structures of nanometer periods are required in such lenses, and a thickness (in the direction of propagation) of several micrometers is needed for high diffracting efficiency. Such structures must be oriented to satisfy Bragg's law, which can only be achieved consistently over the entire lens if the layers vary in their tilt relative to the incident beam. The correct tilt, for a particular wavelength, can be achieved with a very simple technique of using a straight-edge mask to give the necessary gradient of the layers. An analysis of the properties of lenses cut from such a shaded profile is presented and it is shown how to design, prepare, and characterize matched pairs of lenses that operate at a particular wavelength and focal length. It is also shown how to manufacture lenses with ideal curved layers for optimal efficiency.
多层劳厄透镜是用于硬X射线的衍射光学元件。为了实现高数值孔径和分辨率,此类透镜需要具有纳米周期的衍射结构,并且为了获得高衍射效率,需要几微米的厚度(沿传播方向)。此类结构必须定向以满足布拉格定律,只有当各层相对于入射光束的倾斜度不同时,才能在整个透镜上始终如一地实现这一点。对于特定波长,可以通过使用直边掩模这一非常简单的技术来实现各层所需的倾斜度梯度,从而获得正确的倾斜度。本文对从这种阴影轮廓切割出的透镜的特性进行了分析,并展示了如何设计、制备和表征在特定波长和焦距下工作的匹配透镜对。还展示了如何制造具有理想弯曲层的透镜以实现最佳效率。