2023
DOI: 10.1002/adfm.202305502
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Enhanced Magnetic Anisotropy for Reprogrammable High‐Force‐Density Microactuators

Yulan Chen,
Karthik Srinivasan,
Marcus Choates
et al.

Abstract: The precise control of magnetic properties at the microscale has transformative potential in healthcare and human‐robot interaction. This research focuses on understanding the magnetic interactions in nanostructure assemblies responsible for microactuation. By combining experimental measurements and micromagnetic simulations, the interactions in both nanocube and nanochain assemblies are elucidated. Hysteresis measurements and first‐order reversal curves (FORC) reveal that the spatial arrangement of these asse… Show more

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Cited by 2 publications
(1 citation statement)
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“…In S2, the structures are arranged in a more compact configuration on the surface, thereby increasing the interactions between the structures. Consequently, when a NC switches its magnetization, it exerts a demagnetizing field on its neighboring structures, leading to a reduction in the total coercive field of the sample [52]. Another potential explanation could involve the presence of fanning magnetization reversal mode, which can be present in particle chains.…”
Section: Magnetic Properties 331 Magnetization Curvesmentioning
confidence: 99%
“…In S2, the structures are arranged in a more compact configuration on the surface, thereby increasing the interactions between the structures. Consequently, when a NC switches its magnetization, it exerts a demagnetizing field on its neighboring structures, leading to a reduction in the total coercive field of the sample [52]. Another potential explanation could involve the presence of fanning magnetization reversal mode, which can be present in particle chains.…”
Section: Magnetic Properties 331 Magnetization Curvesmentioning
confidence: 99%