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Polychromatic neutron phase-contrast imaging of weakly absorbing samples enabled by phase retrieval

Authors :
Maja Østergaard
Estrid Buhl Naver
Anders Kaestner
Peter K. Willendrup
Annemarie Brüel
Henning Osholm Sørensen
Jesper Skovhus Thomsen
Søren Schmidt
Henning Friis Poulsen
Luise Theil Kuhn
Henrik Birkedal
Source :
Østergaard, M, Naver, E B, Kaestner, A, Willendrup, P K, Brüel, A, Sørensen, H O, Thomsen, J S, Schmidt, S, Poulsen, H F, Kuhn, L T & Birkedal, H 2023, ' Polychromatic neutron phase-contrast imaging of weakly absorbing samples enabled by phase retrieval ', Journal of Applied Crystallography, vol. 56, no. Pt 3, pp. 673-682 . https://doi.org/10.1107/S1600576723003011, Østergaard, M, Naver, E B, Kaestner, A, Willendrup, P K, Brüel, A, Sørensen, H O, Thomsen, J S, Schmidt, S, Poulsen, H F, Theil Kuhn, L & Birkedal, H 2023, ' Polychromatic neutron phase-contrast imaging of weakly absorbing samples enabled by phase retrieval ', Journal of Applied Crystallography, vol. 56, no. Part 3, pp. 673-682 . https://doi.org/10.1107/S1600576723003011
Publication Year :
2023
Publisher :
International Union of Crystallography (IUCr), 2023.

Abstract

The use of a phase-retrieval technique for propagation-based phase-contrast neutron imaging with a polychromatic beam is demonstrated. This enables imaging of samples with low absorption contrast and/or improving the signal-to-noise ratio to facilitate e.g. time-resolved measurements. A metal sample, designed to be close to a phase pure object, and a bone sample with canals partially filled with D2O were used for demonstrating the technique. These samples were imaged with a polychromatic neutron beam followed by phase retrieval. For both samples the signal-to-noise ratios were significantly improved and, in the case of the bone sample, the phase retrieval allowed for separation of bone and D2O, which is important for example for in situ flow experiments. The use of deuteration contrast avoids the use of chemical contrast enhancement and makes neutron imaging an interesting complementary method to X-ray imaging of bone.

Details

ISSN :
16005767
Volume :
56
Database :
OpenAIRE
Journal :
Journal of Applied Crystallography
Accession number :
edsair.doi.dedup.....3d1d106f975472e51cd9e7b78379acc1
Full Text :
https://doi.org/10.1107/s1600576723003011