The electron-optical phase shift induced in the electron beam due to the interaction with the electromagnetic field of magnetized nanoparticles of defined shape and arbitrary dimensions is calculated, presented and discussed. Together with the computable knowledge of vector potential and magnetic induction, including the demagnetizing field, and with the extension to more realistic geometries which will be presented in part II, this theoretical framework can be employed for the interpretation of transmission electron microscopy experiments on magnetic particles on the nanometre scale.
Electron-optical phase shift of magnetic nanoparticles I. Basic concepts / Beleggia, M; Zhu, Y. - In: PHILOSOPHICAL MAGAZINE. - ISSN 1478-6443. - 83:8(2003), pp. 1045-1057. [10.1080/0141861031000066166]
Electron-optical phase shift of magnetic nanoparticles I. Basic concepts
Beleggia M;
2003
Abstract
The electron-optical phase shift induced in the electron beam due to the interaction with the electromagnetic field of magnetized nanoparticles of defined shape and arbitrary dimensions is calculated, presented and discussed. Together with the computable knowledge of vector potential and magnetic induction, including the demagnetizing field, and with the extension to more realistic geometries which will be presented in part II, this theoretical framework can be employed for the interpretation of transmission electron microscopy experiments on magnetic particles on the nanometre scale.Pubblicazioni consigliate
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