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Quantitative phase retrieval and characterization of magnetic nanostructures via Lorentz (scanning) transmission electron microscopy.

Publication ,  Journal Article
Mendoza, KL; Ni, H; Varnavides, G; Chi, M; Ophus, C; Petford-Long, A; Phatak, C
Published in: Journal of physics. Condensed matter : an Institute of Physics journal
April 2025

Magnetic materials phase reconstruction using Lorentz transmission electron microscopy (LTEM) measurements have traditionally been achieved using longstanding methods such as off-axis holography (OAH) fast-Fourier transform technique and the transport-of-intensity equation (TIE). The increase in access to processing power alongside the development of advanced algorithms have allowed for phase retrieval of nanoscale magnetic materials with greater efficacy and resolution. Specifically, reverse-mode automatic differentiation (RMAD) and the extended electron ptychography iterative engine (ePIE) are two recent developments of phase retrieval that can be applied to analyzing micro-to-nano- scale magnetic materials. This work evaluates phase retrieval using TIE, RMAD, and ePIE in simulations of Permalloy (Ni80Fe20) nanoscale islands, or nanomagnets. Extending beyond simulations, we demonstrate total phase retrieval and image reconstructions of a NiFe nanowire using OAH and RMAD in LTEM and ePIE in Lorentz-mode-4D scanning transmission electron microscopy experiments and determine the saturation magnetization through corroborations with micromagnetic modeling. Finally, we demonstrate the efficacy of these methods in retrieving the total phase and highlight its use in characterizing and analyzing the proximity effect of the magnetic nanostructures.

Duke Scholars

Published In

Journal of physics. Condensed matter : an Institute of Physics journal

DOI

EISSN

1361-648X

ISSN

0953-8984

Publication Date

April 2025

Volume

37

Issue

20

Related Subject Headings

  • Fluids & Plasmas
  • 5104 Condensed matter physics
  • 4018 Nanotechnology
  • 4016 Materials engineering
  • 1007 Nanotechnology
  • 0912 Materials Engineering
  • 0204 Condensed Matter Physics
 

Citation

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ICMJE
MLA
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Mendoza, K. L., Ni, H., Varnavides, G., Chi, M., Ophus, C., Petford-Long, A., & Phatak, C. (2025). Quantitative phase retrieval and characterization of magnetic nanostructures via Lorentz (scanning) transmission electron microscopy. Journal of Physics. Condensed Matter : An Institute of Physics Journal, 37(20). https://doi.org/10.1088/1361-648x/adc6e3
Mendoza, Kayna L., Haoyang Ni, Georgios Varnavides, Miaofang Chi, Colin Ophus, Amanda Petford-Long, and Charudatta Phatak. “Quantitative phase retrieval and characterization of magnetic nanostructures via Lorentz (scanning) transmission electron microscopy.Journal of Physics. Condensed Matter : An Institute of Physics Journal 37, no. 20 (April 2025). https://doi.org/10.1088/1361-648x/adc6e3.
Mendoza KL, Ni H, Varnavides G, Chi M, Ophus C, Petford-Long A, et al. Quantitative phase retrieval and characterization of magnetic nanostructures via Lorentz (scanning) transmission electron microscopy. Journal of physics Condensed matter : an Institute of Physics journal. 2025 Apr;37(20).
Mendoza, Kayna L., et al. “Quantitative phase retrieval and characterization of magnetic nanostructures via Lorentz (scanning) transmission electron microscopy.Journal of Physics. Condensed Matter : An Institute of Physics Journal, vol. 37, no. 20, Apr. 2025. Epmc, doi:10.1088/1361-648x/adc6e3.
Mendoza KL, Ni H, Varnavides G, Chi M, Ophus C, Petford-Long A, Phatak C. Quantitative phase retrieval and characterization of magnetic nanostructures via Lorentz (scanning) transmission electron microscopy. Journal of physics Condensed matter : an Institute of Physics journal. 2025 Apr;37(20).
Journal cover image

Published In

Journal of physics. Condensed matter : an Institute of Physics journal

DOI

EISSN

1361-648X

ISSN

0953-8984

Publication Date

April 2025

Volume

37

Issue

20

Related Subject Headings

  • Fluids & Plasmas
  • 5104 Condensed matter physics
  • 4018 Nanotechnology
  • 4016 Materials engineering
  • 1007 Nanotechnology
  • 0912 Materials Engineering
  • 0204 Condensed Matter Physics