Nonuniform micromagnetic states in thin elliptical particle

Ching Ray Chang, Zung Hang Wei, N. A. Usov, Mei Feng Lai, Jong-Ching Wu

Research output: Contribution to journalArticle

Abstract

The nonuniform micromagnetic states in thin elliptical particle were discussed. Stable bending states were obtained for the elliptical particle with sufficiently large in-plane dimensions. It was found that the average magnetization of the bending state decreases as a function of the particle size at fixed aspect ratio.

Original languageEnglish
JournalDigests of the Intermag Conference
Publication statusPublished - 2003 Oct 1

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Aspect ratio
Magnetization
Particle size

All Science Journal Classification (ASJC) codes

  • Electrical and Electronic Engineering

Cite this

Chang, Ching Ray ; Wei, Zung Hang ; Usov, N. A. ; Lai, Mei Feng ; Wu, Jong-Ching. / Nonuniform micromagnetic states in thin elliptical particle. In: Digests of the Intermag Conference. 2003.
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author = "Chang, {Ching Ray} and Wei, {Zung Hang} and Usov, {N. A.} and Lai, {Mei Feng} and Jong-Ching Wu",
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Nonuniform micromagnetic states in thin elliptical particle. / Chang, Ching Ray; Wei, Zung Hang; Usov, N. A.; Lai, Mei Feng; Wu, Jong-Ching.

In: Digests of the Intermag Conference, 01.10.2003.

Research output: Contribution to journalArticle

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T1 - Nonuniform micromagnetic states in thin elliptical particle

AU - Chang, Ching Ray

AU - Wei, Zung Hang

AU - Usov, N. A.

AU - Lai, Mei Feng

AU - Wu, Jong-Ching

PY - 2003/10/1

Y1 - 2003/10/1

N2 - The nonuniform micromagnetic states in thin elliptical particle were discussed. Stable bending states were obtained for the elliptical particle with sufficiently large in-plane dimensions. It was found that the average magnetization of the bending state decreases as a function of the particle size at fixed aspect ratio.

AB - The nonuniform micromagnetic states in thin elliptical particle were discussed. Stable bending states were obtained for the elliptical particle with sufficiently large in-plane dimensions. It was found that the average magnetization of the bending state decreases as a function of the particle size at fixed aspect ratio.

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