Rapid prototyping of fresnel zone plates via direct Ga+ ion beam lithography for high-resolution x-ray imaging

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Abstract

A significant challenge to the wide utilization of X-ray microscopy lies in the difficulty in fabricating adequate high-resolution optics. To date, electron beam lithography has been the dominant technique for the fabrication of diffractive focusing optics called Fresnel zone plates (FZP), even though this preparation method is usually very complicated and is composed of many fabrication steps. In this work, we demonstrate an alternative method that allows the direct, simple, and fast fabrication of FZPs using focused Ga + beam lithography practically, in a single step. This method enabled us to prepare a high-resolution FZP in less than 13 min. The performance of the FZP was evaluated in a scanning transmission soft X-ray microscope where nanostructures as small as sub-29 nm in width were clearly resolved, with an ultimate cutoff resolution of 24.25 nm, demonstrating the highest first-order resolution for any FZP fabricated by the ion beam lithography technique. This rapid and simple fabrication scheme illustrates the capabilities and the potential of direct ion beam lithography (IBL) and is expected to increase the accessibility of high-resolution optics to a wider community of researchers working on soft X-ray and extreme ultraviolet microscopy using synchrotron radiation and advanced laboratory sources. © 2013 American Chemical Society.

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Keskinbora, K., Grévent, C., Eigenthaler, U., Weigand, M., & Schütz, G. (2013). Rapid prototyping of fresnel zone plates via direct Ga+ ion beam lithography for high-resolution x-ray imaging. ACS Nano, 7(11), 9788–9797. https://doi.org/10.1021/nn403295k

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