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000636462 1001_ $$0P:(DE-H253)PIP1095989$$aWang, Wenxin$$b0
000636462 1112_ $$aAdvances in X-Ray/EUV Sources, Optics, and Components XX $$cSan Diego$$d2025-08-03 - 2025-08-07$$wUSA
000636462 245__ $$aCompact Diamond X-ray Lens Cubes for Nanofocusing
000636462 260__ $$aBellingham, Wash.$$bSPIE$$c2025
000636462 29510 $$aAdvances in X-Ray/EUV Sources, Optics, and Components XX : [Proceedings] - SPIE, 2025. - ISBN 97815106914839781510691490 - doi:10.1117/12.3063590
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000636462 520__ $$aNanofocusing with refractive x-ray optics requires the combination of many single lenses into a larger lens stack to achieve high numerical apertures. So far, these optics have suffered from aberration due to accuracy limitations in x-ray lens manufacturing. Refractive phase plates have been used to compensate these errors, but require separate alignment and wavefront metrology. Here, we present the concept of x-ray lens cubes, a new assembly strategy developed for laser-ablated diamond x-ray lenses. It allows to integrate a diamond phase corrector directly into the quasi-monolithic assembly, creating lens cubes that contain several lenses with a matching and pre-aligned phase corrector. We show the experimental validation of individual lens cubes, as well as the combination of two cubes to form a larger lens stack. The concept and advantages of integrating multiple phase plates into a lens assembly are validated by numerical simulations. Aberration-compensated lens cubes can offer near diffraction-limited imaging performance over a broad x-ray energy range in combination with easy alignment, providing broad practical applicability for nano-imaging experiments in the hard x-ray regime. 
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000636462 7001_ $$0P:(DE-H253)PIP1002724$$aDoehrmann, Ralph$$b1
000636462 7001_ $$0P:(DE-H253)PIP1005586$$aBotta, Stephan$$b2
000636462 7001_ $$0P:(DE-H253)PIP1097615$$aSharma, Ayush$$b3
000636462 7001_ $$0P:(DE-H253)PIP1013485$$aMadsen, Anders$$b4
000636462 7001_ $$0P:(DE-H253)PIP1008438$$aSchroer, Christian$$b5
000636462 7001_ $$0P:(DE-H253)PIP1013169$$aSeiboth, Frank$$b6$$eCorresponding author
000636462 773__ $$0PERI:(DE-600)2398361-9$$a10.1117/12.3063590$$p136200G$$tProceedings of SPIE$$v13620$$x0038-7355$$y2025
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