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Antiferromagnetic Interlayer Exchange Coupling in All-Semiconducting EuS/PbS/EuS TrilayersA comprehensive experimental study on the antiferromagnetic interlayer exchange coupling in high quality epitaxial all-semiconducting EuSPbSEuS trilayers is reported. The influence of substrates, the thickness of the non-magnetic PbS spacer layer, and of temperature, was investigated by means of SQUID magnetometry. In trilayers with a PbS thickness between 4 and 12 deg A the low temperature hysteresis loops showed the signature of antiferromagnetic coupling. The value of the interlayer exchange coupling energy was determined by simulating the data with a modified Stoner model, including Zeeman, anisotropy, and exchange coupling energies. An important observation was of a strong dependence of the interlayer exchange coupling energy on temperature, consistent with a power law dependence of the exchange coupling constant on the saturation magnetization of the EuS layers. While no theoretical description is readily available, we conjecture that the observed behavior is due to a dependence of the interlayer exchange coupling energy on the exchange splitting of the EuS conduction band.
Document ID
20040000188
Acquisition Source
Marshall Space Flight Center
Document Type
Preprint (Draft being sent to journal)
Authors
Smits, C. J. P.
(Technische Hogeschool Eindhoven, Netherlands)
Filip, A. T.
(Technische Hogeschool Eindhoven, Netherlands)
Swagten, H. J. M.
(Technische Hogeschool Eindhoven, Netherlands)
Koopmans, B.
(Technische Hogeschool Eindhoven, Netherlands)
deJonge, W. J. M.
(Technische Hogeschool Eindhoven, Netherlands)
Chernyshova, M.
(Polish Academy of Sciences Warsaw, Poland)
Kowalczyk, L.
(Polish Academy of Sciences Warsaw, Poland)
Grasza, K.
(Polish Academy of Sciences Warsaw, Poland)
Szczerbakow, A.
(Polish Academy of Sciences Warsaw, Poland)
Story, T.
(Polish Academy of Sciences Warsaw, Poland)
Date Acquired
August 21, 2013
Publication Date
January 1, 2003
Subject Category
Solid-State Physics
Funding Number(s)
CONTRACT_GRANT: NAS8-02096
Distribution Limits
Public
Copyright
Other

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