Journal
PHYSICAL REVIEW B
Volume 84, Issue 13, Pages -Publisher
AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.84.134431
Keywords
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Funding
- National Science Foundation (NSF) [CCF-0403673, ECCS-1028547]
- project PRiDE [POSDRU/89/1.5/S/57083]
- ANCS [PNII 12-093 HIFI, POSDRU/89/1.5/S/49944]
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Interactions and magnetization reversal of Ni nanowire arrays have been investigated by the first-order reversal curve (FORC) method. Several series of samples with controlled spatial distribution were considered including simple wires of different lengths and diameters (70 and 110 nm) and complex wires with a single modulated diameter along their length. Subtle features of magnetic interactions are revealed through a quantitative analysis of the local interaction field profile distributions obtained from the FORC method. In addition, the FORC analysis indicates that the nanowire systems with a mean diameter of 70 nm appear to be organized in symmetric clusters indicative of a reversal-field memory effect.
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