Single-shot, omni-directional x-ray scattering imaging with a laboratory source and single-photon localization
Omni-directional, ultra-small-angle x-ray scattering imaging provides a method to measure the orientation of micro-structures without having to resolve them. In this letter, we use single-photon localization with the Timepix3 chip to demonstrate, to the best of our knowledge, the first laboratory-ba...
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Veröffentlicht in: | Optics letters 2020-02, Vol.45 (4), p.1021-1024 |
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container_title | Optics letters |
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creator | Dreier, Erik S Silvestre, Chantal Kehres, Jan Turecek, Daniel Khalil, Mohamad Hemmingsen, Jens H Hansen, Ole Jakubek, Jan Feidenhans'l, Robert Olsen, Ulrik L |
description | Omni-directional, ultra-small-angle x-ray scattering imaging provides a method to measure the orientation of micro-structures without having to resolve them. In this letter, we use single-photon localization with the Timepix3 chip to demonstrate, to the best of our knowledge, the first laboratory-based implementation of single-shot, omni-directional x-ray scattering imaging using the beam-tracking technique. The setup allows a fast and accurate retrieval of the scattering signal using a simple absorption mask. We suggest that our new approach may enable faster laboratory-based tensor tomography and could be used for energy-resolved x-ray scattering imaging. |
doi_str_mv | 10.1364/OL.381420 |
format | Article |
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subjects | Laboratories Localization Photons Small angle X ray scattering Tensors X ray imagery |
title | Single-shot, omni-directional x-ray scattering imaging with a laboratory source and single-photon localization |
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