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High-resolution Fresnel zone plate fabrication by achromatic spatial frequency multiplication with extreme ultraviolet radiation

机译:消色差空间频率倍增与极紫外辐射的高分辨率菲涅耳波带片制造

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We used an approach based on the self-imaging property of gratings to fabricate high-resolution Fresnel zone plates (FZPs). Under certain conditions, the illumination of a parent ZP with a wideband EUV beam produces a radially oscillating intensity distribution with double the spatial frequency of the ZP. This intensity distribution is observed in a certain distance range, given by the local zone width, the focal length of the ZP, and the spectral bandwidth of the illuminating beam. This phenomenon has been used to lithographically record daughter ZPs that have approximately half the zone width, thus twice the resolution, of the parent ZP. FZPs with zone widths as low as 30 nm have been fabricated in this way. Use of this technique in the extreme ultraviolet (EUV) region has the potential for high throughput production of FZPs and similar high-resolution diffraction optics with variable spatial frequency for the EUV and x-ray regions.
机译:我们使用了一种基于光栅自成像特性的方法来制造高分辨率菲涅耳波带片(FZP)。在某些条件下,母带ZP用宽带EUV光束照射会产生径向振荡的强度分布,其强度是ZP空间频率的两倍。在一定的距离范围内观察到这种强度分布,该距离范围由局部区域宽度,ZP的焦距和照明光束的光谱带宽给出。此现象已被用于光刻记录子ZP,其子区域ZP大约是父ZP的区域宽度的一半,因此是分辨率的两倍。以这种方式制造了具有低至30 nm的区域宽度的FZP。在极紫外(EUV)区域中使用该技术具有高通量生产FZP的潜力,并且对于EUV和X射线区域,类似的高分辨率衍射光学器件具有可变的空间频率。

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