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My research focuses on the fundamental of magnetic nanoparticles that have very uniform sizes, as well as possible applications in information storage and processing, and biomedicine. Monodisperse nanoparticles are synthesized by chemical methods and used as building blocks for self-assembly into arrays. The collective magnetic behavior of the arrays has been studied using electron holography and Lorentz microscopy to image domains, and using polarized small angle neutron scattering to investigate the magnetization length scales within nanoparticles and their assemblies. Magnetic nanoparticles and nanopillars are also made by electron beam lithography and etching. We have demonstrated the ability of conductive atomic force microscopy to detect the state of a magnetic tunnel junction nanopillar, and switch it using a spin polarized current.
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Microscopy and Microanalysisno. S1 (2022): 2864-2865
Nano Lettersno. 2 (2022): 622-629
Handbook of Magnetism and Magnetic Materialspp.1011-1046, (2021)
JOURNAL OF PHYSICS D-APPLIED PHYSICSno. 4 (2020): 044001
Y. Ijiri,K. L. Krycka, I. Hunt-Isaak, H. Pan,J. Hsieh,J. A. Borchers,J. J. Rhyne, S. D. Oberdick, A. Abdelgawad,S. A. Majetich
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