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Optimization of waveguide optics for lensless x-ray imaging

dc.contributor.authorKrüger, Sven Philip
dc.date.accessioned2011-04-15T07:09:37Z
dc.date.available2014-04-15T07:09:37Z
dc.date.issued2011
dc.identifier.urihttps://doi.org/10.17875/gup2011-78
dc.descriptionSoftcover, 168 S.: 40,00 €
dc.format.extentIII, 154
dc.format.mediumPrint
dc.language.isoeng
dc.relation.ispartofseriesGöttingen Series in x-ray Physics
dc.rights.urihttp://creativecommons.org/licenses/by-nd/3.0/de
dc.subject.ddc530
dc.titleOptimization of waveguide optics for lensless x-ray imaging
dc.typemonograph
dc.price.print40,00
dc.identifier.urnurn:nbn:de:gbv:7-isbn-978-3-86395-015-6-1
dc.identifier.ppn685122816
dc.identifier.ppn667990690
dc.relation.ppnGBV*667987525*
dc.description.printSoftcover, 17x24
dc.subject.divisionpeerReviewed
dc.subject.subjectheadingPhysik
dc.relation.isbn-13978-3-86395-015-6
dc.relation.issn2191-9860
dc.identifier.articlenumber8100995
dc.identifier.internisbn-978-3-86395-015-6
dc.identifier.internisbn-978-3-86395-015-6
dc.bibliographicCitation.volume002
dc.type.subtypethesis
dc.subject.bisacSCI055000
dc.notes.oaiprint
dc.subject.vlb640
dc.subject.bicPH
dc.description.abstractengLensless x-ray imaging is a promising method to determine the three-dimensional structure of material science and biological specimens at the nanoscale. The development of this technique is strongly related to the optimization of x-ray optics since the image formation and object reconstruction depend significantly on the properties of the illumination wave-field. Waveguide optics act as quasi-point sources and enable the spatial and coherent filtering of x-ray beams. Up to now, x-ray waveguides were severely limited in transmission and flux, restricting their use to high-contrast test structures with moderate resolution and long accumulation times. To overcome these limitations, a novel waveguide design with an optimized refractive index profile is presented which significantly minimizes the absorption of the modes propagating inside the waveguide. Experimental results along with simulations show that these two-component planar x-ray waveguides provide small beam cross-sections along with a high photon flux at the exit. By a serial arrangement of two waveguide slices an optimized illumination source has been developed for high-resolution microscopy, as demonstrated in proof-of-concept imaging experiments.
dc.notes.vlb-printlieferbar
dc.intern.doi10.17875/gup2011-78
dc.identifier.purlhttp://resolver.sub.uni-goettingen.de/purl?isbn-978-3-86395-015-6
dc.identifier.asin3863950151
dc.subject.themaPH


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