Recovering magnetization distributions from their noisy diffraction data

Ne-Te Duane Loh, Stefan Eisebitt, Samuel Flewett, and Veit Elser
Phys. Rev. E 82, 061128 – Published 22 December 2010

Abstract

We study, using simulated experiments inspired by thin-film magnetic domain patterns, the feasibility of phase retrieval in x-ray diffractive imaging in the presence of intrinsic charge scattering given only photon-shot-noise limited diffraction data. We detail a reconstruction algorithm to recover the sample’s magnetization distribution under such conditions and compare its performance with that of Fourier transform holography. Concerning the design of future experiments, we also chart out the reconstruction limits of diffractive imaging when photon-shot-noise and the intensity of charge scattering noise are independently varied. This work is directly relevant to the time-resolved imaging of magnetic dynamics using coherent and ultrafast radiation from x-ray free-electron lasers and also to broader classes of diffractive imaging experiments which suffer noisy data, missing data, or both.

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  • Received 10 August 2010

DOI:https://doi.org/10.1103/PhysRevE.82.061128

©2010 The American Physical Society

Authors & Affiliations

Ne-Te Duane Loh1,2, Stefan Eisebitt3, Samuel Flewett3, and Veit Elser1

  • 1Laboratory of Atomic and Solid State Physics (LASSP), Cornell University, Ithaca, New York 14853-2501, USA
  • 2Cornell High Energy Synchrotron Science (CHESS), Cornell University, Ithaca, New York 14853-2501, USA
  • 3Institut für Optik und Atomare Physik, TU Berlin, Straße des 17, Juni 135, D-10623 Berlin, Germany

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Vol. 82, Iss. 6 — December 2010

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