2002
DOI: 10.1103/physrevb.65.064424
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Rectangular lattices of permalloy nanoparticles:  Interplay of single-particle magnetization distribution and interparticle interaction

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Cited by 32 publications
(16 citation statements)
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“…It was found out that applying the in-plane field H 0 we can cause nucleation of the vortex, i.e., make the single-domain state unstable, annihilation of the vortex, i.e. make the vortex-like state unstable 8,9 . Practically, it is more convenient to vary the external magnetic field than the dimensions of the particle.…”
Section: Resultsmentioning
confidence: 99%
See 1 more Smart Citation
“…It was found out that applying the in-plane field H 0 we can cause nucleation of the vortex, i.e., make the single-domain state unstable, annihilation of the vortex, i.e. make the vortex-like state unstable 8,9 . Practically, it is more convenient to vary the external magnetic field than the dimensions of the particle.…”
Section: Resultsmentioning
confidence: 99%
“…In an array of particles their magnetostatic interaction may have a strong influence on a particle magnetization. If the distance between particles is rather small then magnetostatic interaction has a strong destabilizing effect on the vortex state, leading to a significant decrease in both the nucleation and annihilation fields 8,9 . The interplay between the ferromagnetism and superconductivity can also lead to changes in the magnetization distribution.…”
Section: Introductionmentioning
confidence: 99%
“…The characteristic lateral sizes of particles was 400 nm  600 nm (aspect ratio of 1.5) and heights of particles were varied from 10 to 30 nm. Details of the sample preparation were reported in previous work [25].…”
Section: Experimentalsmentioning
confidence: 99%
“…3) by magnetron sputtering and electron beam lithography [48]. The manufacture of a multi layer magnetic particle was described in detail in [49].…”
Section: Modification Of the Field Dependence Of The Critical Currentmentioning
confidence: 99%
“…An a × a square lattice of elliptic sub micron Co particles with lateral sizes of 0.65 × 0.28 μm and a thickness of 27 nm on the upper electrode cov ered with a 50 nm SiO layer was formed by magnetron sputtering and electron beam lithography [48]. The period of the lattice of particles was a = 1.4 μm.…”
Section: Commensurability Effects In the Josephson Junction In The Fimentioning
confidence: 99%