Features of the Magnetic State of an Ordered Array of Ferromagnetic Ribbons
V. A. Orlova, b, *, R. Yu. Rudenkoa, A. V. Luk’yanenkob, V. Yu. Yakovchukb, V. A. Komarovb,
V. S. Prokopenkoc, and I. N. Orlovac
a Siberian Federal University, Krasnoyarsk, 660041 Russia
b Kirenskii Institute of Physics, Russian Academy of Sciences, Krasnoyarsk, 660036 Russia
c Astaf’ev Krasnoyrsk State Pedagogical University, Krasnoyarsk, 660049 Russia
Correspondence to: *e-mail: vaorlov@sfu-kras.ru
Received 21 September, 2022
Abstract—The features of the magnetic state of an array of parallel oriented permalloy ribbons are discussed. The arrays are made by explosive lithography. The ribbons have a thickness of 180 nm, a width of 2.8 µm, and a length of about 4 mm. The distance between ribbons in different samples varies in the range from 300 nm to 4 μm. It is found that the ribbons in the regions far from the end faces are in a single-domain state with small-angle ripples, the magnetization distribution of which correlates with inhomogeneities of the ribbon side surfaces. Moreover, there is a distinct relationship in the spatial distribution of the ripples between adjacent ribbons with a relatively small distance between them. This makes it possible to evaluate the role of the magnetostatic coupling of magnetic subsystems of array elements and to estimate the characteristic value of the random stray field that pins the magnetization.
Keywords: magnetic domain wall, magnetic vortex, ferromagnetic ribbon
DOI: 10.1134/S0031918X22601780