4.6 Article

Experimental and theoretical investigation of the magnetization dynamics of an artificial square spin ice cluster

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JOURNAL OF APPLIED PHYSICS
卷 120, 期 14, 页码 -

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AMER INST PHYSICS
DOI: 10.1063/1.4961705

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We study the magnetization dynamics of a spin ice cluster which is a building block of an artificial square spin ice fabricated by focused electron-beam-induced deposition both experimentally and theoretically. The spin ice cluster is composed of twelve interacting Co nanoislands grown directly on top of a high-resolution micro-Hall sensor. By employing micromagnetic simulations and a macrospin model, we calculate the magnetization and the experimentally investigated stray field emanating from a single nanoisland. The parameters determined from a comparison with the experimental hysteresis loop are used to derive an effective single-dipole macrospin model that allows us to investigate the dynamics of the spin ice cluster. Our model reproduces the experimentally observed non-deterministic sequences in the magnetization curves as well as the distinct temperature dependence of the hysteresis loop. Published by AIP Publishing.

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