Analysis on giant magnetoresistive characteristics of synthetic antiferromagnet-based spin-valves with modified pinned layers

Jeong Suk Park, Seong Rae Lee, Young-geun Kim

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Abstract

An analysis on giant magnetoresistive characteristics of synthetic antiferromagnet-based spin-valves with modified pinned layers was presented. Parametric sensitivity on the giant magnetoresistive (GMR) transfer behaviors was determined using series of calculations based on the Landau-Lifschitz-gilbert equation incorporating a single-domain multilayer model. The results were found similar with MR transfer behaviors in conventional synthetic spin valves.

Original languageEnglish
Title of host publicationDigests of the Intermag Conference
Publication statusPublished - 2003
EventIntermag 2003: International Magnetics Conference - Boston, MA, United States
Duration: 2003 Mar 282003 Apr 3

Other

OtherIntermag 2003: International Magnetics Conference
CountryUnited States
CityBoston, MA
Period03/3/2803/4/3

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Multilayers

ASJC Scopus subject areas

  • Electrical and Electronic Engineering

Cite this

Analysis on giant magnetoresistive characteristics of synthetic antiferromagnet-based spin-valves with modified pinned layers. / Park, Jeong Suk; Lee, Seong Rae; Kim, Young-geun.

Digests of the Intermag Conference. 2003.

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Park, JS, Lee, SR & Kim, Y 2003, Analysis on giant magnetoresistive characteristics of synthetic antiferromagnet-based spin-valves with modified pinned layers. in Digests of the Intermag Conference. Intermag 2003: International Magnetics Conference, Boston, MA, United States, 03/3/28.
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abstract = "An analysis on giant magnetoresistive characteristics of synthetic antiferromagnet-based spin-valves with modified pinned layers was presented. Parametric sensitivity on the giant magnetoresistive (GMR) transfer behaviors was determined using series of calculations based on the Landau-Lifschitz-gilbert equation incorporating a single-domain multilayer model. The results were found similar with MR transfer behaviors in conventional synthetic spin valves.",
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N2 - An analysis on giant magnetoresistive characteristics of synthetic antiferromagnet-based spin-valves with modified pinned layers was presented. Parametric sensitivity on the giant magnetoresistive (GMR) transfer behaviors was determined using series of calculations based on the Landau-Lifschitz-gilbert equation incorporating a single-domain multilayer model. The results were found similar with MR transfer behaviors in conventional synthetic spin valves.

AB - An analysis on giant magnetoresistive characteristics of synthetic antiferromagnet-based spin-valves with modified pinned layers was presented. Parametric sensitivity on the giant magnetoresistive (GMR) transfer behaviors was determined using series of calculations based on the Landau-Lifschitz-gilbert equation incorporating a single-domain multilayer model. The results were found similar with MR transfer behaviors in conventional synthetic spin valves.

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