Relaxation time and thermal stability in magnetooptical recording media

Rachid Sbiaa, Yusuke Itoh, Mitsumi Mochida, Takao Suzuki

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

Abstract

The time dependence of the magnetization process in amorphous TbFECo thin films and (TbFeCo/Pt) multilayers was studied. A Gaussian distribution of relaxation times for magnetic after effect was assumed to describe the obtained data.

Original languageEnglish
Title of host publicationDigests of the Intermag Conference
PublisherIEEE
Publication statusPublished - 2000
Event2000 IEEE International Magnetics Conference-2000 IEEE INTERMAG - Toronto, Ont, Can
Duration: Apr 9 2000Apr 13 2000

Other

Other2000 IEEE International Magnetics Conference-2000 IEEE INTERMAG
CityToronto, Ont, Can
Period4/9/004/13/00

Fingerprint

Magnetic after effect
Gaussian distribution
Amorphous films
Relaxation time
Magnetization
Multilayers
Thermodynamic stability
Thin films

ASJC Scopus subject areas

  • Electrical and Electronic Engineering

Cite this

Sbiaa, R., Itoh, Y., Mochida, M., & Suzuki, T. (2000). Relaxation time and thermal stability in magnetooptical recording media. In Digests of the Intermag Conference IEEE.

Relaxation time and thermal stability in magnetooptical recording media. / Sbiaa, Rachid; Itoh, Yusuke; Mochida, Mitsumi; Suzuki, Takao.

Digests of the Intermag Conference. IEEE, 2000.

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

Sbiaa, R, Itoh, Y, Mochida, M & Suzuki, T 2000, Relaxation time and thermal stability in magnetooptical recording media. in Digests of the Intermag Conference. IEEE, 2000 IEEE International Magnetics Conference-2000 IEEE INTERMAG, Toronto, Ont, Can, 4/9/00.
Sbiaa R, Itoh Y, Mochida M, Suzuki T. Relaxation time and thermal stability in magnetooptical recording media. In Digests of the Intermag Conference. IEEE. 2000
Sbiaa, Rachid ; Itoh, Yusuke ; Mochida, Mitsumi ; Suzuki, Takao. / Relaxation time and thermal stability in magnetooptical recording media. Digests of the Intermag Conference. IEEE, 2000.
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