Three‐dimensional reconstruction of magnetic vector fields using electron‐holographic interferometry. Lai, G., Hirayama, T., Fukuhara, A., Ishizuka, K., Tanji, T., & Tonomura, A. Journal of Applied Physics, 75(9):4593–4598, May, 1994.
Paper doi abstract bibtex A method of reconstructing three‐dimensional magnetic fields using electron‐holographic interferometry is described. First, measured two‐dimensional phase distributions are shown to reveal the projected magnetic flux structure of a microscopic object. Second, an algorithm for reconstructing the magnetic flux density in three dimensions from the phase distributions at different viewing directions has been developed and tested. An application to a bariumferrite particle is presented.
@article{lai_threedimensional_1994,
title = {Three‐dimensional reconstruction of magnetic vector fields using electron‐holographic interferometry},
volume = {75},
issn = {0021-8979, 1089-7550},
url = {http://scitation.aip.org/content/aip/journal/jap/75/9/10.1063/1.355955},
doi = {10.1063/1.355955},
abstract = {A method of reconstructing three‐dimensional magnetic fields using electron‐holographic interferometry is described. First, measured two‐dimensional phase distributions are shown to reveal the projected magnetic flux structure of a microscopic object. Second, an algorithm for reconstructing the magnetic flux density in three dimensions from the phase distributions at different viewing directions has been developed and tested. An application to a bariumferrite particle is presented.},
number = {9},
urldate = {2015-06-15},
journal = {Journal of Applied Physics},
author = {Lai, Guanming and Hirayama, Tsukasa and Fukuhara, Akira and Ishizuka, Kazuo and Tanji, Takayoshi and Tonomura, Akira},
month = may,
year = {1994},
keywords = {Barium, Ferrites, Interferometry, Magnetic fields, Magnetic flux},
pages = {4593--4598},
}
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