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Sub-10 nm beam confinement by X-ray waveguides: design, fabrication and characterization of optical properties

The propagation of hard X-ray synchrotron beams in waveguides with guiding layer diameters in the 9–35 nm thickness range has been studied. The planar waveguide structures consist of an optimized two-component cladding. The presented fabrication method is suitable for short and leak-proof waveguide...

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Autores principales: Krüger, S. P., Neubauer, H., Bartels, M., Kalbfleisch, S., Giewekemeyer, K., Wilbrandt, P. J., Sprung, M., Salditt, T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3284344/
https://www.ncbi.nlm.nih.gov/pubmed/22338684
http://dx.doi.org/10.1107/S0909049511051983
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author Krüger, S. P.
Neubauer, H.
Bartels, M.
Kalbfleisch, S.
Giewekemeyer, K.
Wilbrandt, P. J.
Sprung, M.
Salditt, T.
author_facet Krüger, S. P.
Neubauer, H.
Bartels, M.
Kalbfleisch, S.
Giewekemeyer, K.
Wilbrandt, P. J.
Sprung, M.
Salditt, T.
author_sort Krüger, S. P.
collection PubMed
description The propagation of hard X-ray synchrotron beams in waveguides with guiding layer diameters in the 9–35 nm thickness range has been studied. The planar waveguide structures consist of an optimized two-component cladding. The presented fabrication method is suitable for short and leak-proof waveguide slices with lengths (along the optical axis) in the sub-500 µm range, adapted for optimized transmission at photon energies of 11.5–18 keV. A detailed comparison between finite-difference simulations of waveguide optics and the experimental results is presented, concerning transmission, divergence of the waveguide exit beam, as well as the angular acceptance. In a second step, two crossed waveguides have been used to create a quasi-point source for propagation-based X-ray imaging at the new nano-focus endstation of the P10 coherence beamline at Petra III. By inverting the measured Fraunhofer diffraction pattern by an iterative error-reduction algorithm, a two-dimensional focus of 10 nm × 10 nm is obtained. Finally, holographic imaging of a lithographic test structure based on this optical system is demonstrated.
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spelling pubmed-32843442012-02-23 Sub-10 nm beam confinement by X-ray waveguides: design, fabrication and characterization of optical properties Krüger, S. P. Neubauer, H. Bartels, M. Kalbfleisch, S. Giewekemeyer, K. Wilbrandt, P. J. Sprung, M. Salditt, T. J Synchrotron Radiat Research Papers The propagation of hard X-ray synchrotron beams in waveguides with guiding layer diameters in the 9–35 nm thickness range has been studied. The planar waveguide structures consist of an optimized two-component cladding. The presented fabrication method is suitable for short and leak-proof waveguide slices with lengths (along the optical axis) in the sub-500 µm range, adapted for optimized transmission at photon energies of 11.5–18 keV. A detailed comparison between finite-difference simulations of waveguide optics and the experimental results is presented, concerning transmission, divergence of the waveguide exit beam, as well as the angular acceptance. In a second step, two crossed waveguides have been used to create a quasi-point source for propagation-based X-ray imaging at the new nano-focus endstation of the P10 coherence beamline at Petra III. By inverting the measured Fraunhofer diffraction pattern by an iterative error-reduction algorithm, a two-dimensional focus of 10 nm × 10 nm is obtained. Finally, holographic imaging of a lithographic test structure based on this optical system is demonstrated. International Union of Crystallography 2012-03-01 2012-01-06 /pmc/articles/PMC3284344/ /pubmed/22338684 http://dx.doi.org/10.1107/S0909049511051983 Text en © S. P. Krüger et al. 2012 http://creativecommons.org/licenses/by/2.0/uk/ This is an open-access article distributed under the terms of the Creative Commons Attribution Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.
spellingShingle Research Papers
Krüger, S. P.
Neubauer, H.
Bartels, M.
Kalbfleisch, S.
Giewekemeyer, K.
Wilbrandt, P. J.
Sprung, M.
Salditt, T.
Sub-10 nm beam confinement by X-ray waveguides: design, fabrication and characterization of optical properties
title Sub-10 nm beam confinement by X-ray waveguides: design, fabrication and characterization of optical properties
title_full Sub-10 nm beam confinement by X-ray waveguides: design, fabrication and characterization of optical properties
title_fullStr Sub-10 nm beam confinement by X-ray waveguides: design, fabrication and characterization of optical properties
title_full_unstemmed Sub-10 nm beam confinement by X-ray waveguides: design, fabrication and characterization of optical properties
title_short Sub-10 nm beam confinement by X-ray waveguides: design, fabrication and characterization of optical properties
title_sort sub-10 nm beam confinement by x-ray waveguides: design, fabrication and characterization of optical properties
topic Research Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3284344/
https://www.ncbi.nlm.nih.gov/pubmed/22338684
http://dx.doi.org/10.1107/S0909049511051983
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