Physics-informed vector ptychography for imaging vector order parameters

Resonant soft X-ray ptychography is capable of imaging magnetic materials down to a few nanometres resolution, but conventional reconstructions treat the specimen as a scalar transmission function, discarding the vector information carried by resonant scattering. Optical vector ptychography recovers the Jones matrix, but requires polarisation analysis after the sample, which is impractical for soft X-rays. We introduce physics-informed vector ptychography (PIVP), which embeds the resonant scattering formalism in the ptychographic forward model, parameterising the Jones matrix by the local order parameter and removing the need for a downstream analyser. We demonstrate PIVP for the Néel vector of an antiferromagnet using simulated data for the proposed Diamond-II CSXID beamline, recovering the complete Néel field. We also demonstrate that, for this set of parameters, the fidelity of this approach is superior to conventional scalar reconstructions.

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Publication Details

Journal
Optics Express
Published
2026-09-24
DOI
https://doi.org/10.1364/oe.611217
Primary Topic
Advanced X-ray Imaging Techniques
Type
article
Field-Weighted Citation Impact
0.00

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article

Physics-informed vector ptychography for imaging vector order parameters

Charlie Godfrey, Paolo Radaelli
Optics Express
Advanced X-ray Imaging Techniques
article

Physics-informed vector ptychography for imaging vector order parameters

Charlie Godfrey, Paolo Radaelli
article en

Abstract

Resonant soft X-ray ptychography is capable of imaging magnetic materials down to a few nanometres resolution, but conventional reconstructions treat the specimen as a scalar transmission function, discarding the vector information carried by resonant scattering. Optical vector ptychography recovers the Jones matrix, but requires polarisation analysis after the sample, which is impractical for soft X-rays. We introduce physics-informed vector ptychography (PIVP), which embeds the resonant scattering formalism in the ptychographic forward model, parameterising the Jones matrix by the local order parameter and removing the need for a downstream analyser. We demonstrate PIVP for the Néel vector of an antiferromagnet using simulated data for the proposed Diamond-II CSXID beamline, recovering the complete Néel field. We also demonstrate that, for this set of parameters, the fidelity of this approach is superior to conventional scalar reconstructions.

Optics ExpressVol. 34(20)
UK Research and Innovation
Openalex Percentile: Top 18%
Advanced X-ray Imaging Techniques
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