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Number of results
2006 | 110 | 2 | 225-231

Article title

Interlayer Exchange Coupling in Semiconductor EuS-PbS Ferromagnetic Wedge Multilayers

Content

Title variants

Languages of publication

EN

Abstracts

EN
Antiferromagnetic interlayer coupling between ferromagnetic layers of EuS via nonmagnetic PbS spacer layer was experimentally studied in EuS-PbS wedge multilayers grown on KCl (001) substrates with EuS thickness of 6 nm and PbS thickness varying in the wedges in the range 0.3-6 nm (i.e. n=1-20 monolayers). Measurements of magnetic hysteresis loops of EuS-PbS multilayers performed in the temperature range 5-30 K by superconducting (SQUID) and magneto-optical magnetometers revealed a rapid increase in saturation magnetic field in multilayers with PbS spacer thinner than about 1.5 nm. It shows a monotonic increase in interlayer coupling strength with a decreasing PbS spacer thickness, in qualitative agreement with 1/2^n dependence predicted theoretically for semiconductor magnetic superlattices.

Keywords

EN

Year

Volume

110

Issue

2

Pages

225-231

Physical description

Dates

published
2006-08
received
2006-06-17

Contributors

author
  • Institute of Physics, Polish Academy of Sciences, al. Lotników 32/46, 02-668 Warsaw, Poland
author
  • Institute of Physics, Polish Academy of Sciences, al. Lotników 32/46, 02-668 Warsaw, Poland
author
  • Institute of Physics, Polish Academy of Sciences, al. Lotników 32/46, 02-668 Warsaw, Poland
author
  • Institute of Physics, Polish Academy of Sciences, al. Lotników 32/46, 02-668 Warsaw, Poland
author
  • Institute of Physics, Polish Academy of Sciences, al. Lotników 32/46, 02-668 Warsaw, Poland
author
  • Institute of Physics, Polish Academy of Sciences, al. Lotników 32/46, 02-668 Warsaw, Poland
author
  • National Technical University KPI, 21 Frunze Street, 61002 Kharkov, Ukraine
author
  • National Technical University KPI, 21 Frunze Street, 61002 Kharkov, Ukraine
author
  • Institute for Scintillation Materials NASU, Lenin Ave. 60, 61001 Kharkov, Ukraine

References

  • 1. A. Stachow-Wójcik, T. Story, W. Dobrowolski, M. Arciszewska, R.R. Galazka, H.J.M. Swagten, W.J.M. de Jonge, A. Twardowski, A.Yu. Sipatov, Phys. Rev. B, 60, 15220, 1999
  • 2. T. Story, Phys. Status Solidi B, 236, 310, 2003
  • 3. I.V. Kolesnikov, V.A. Litvinov, A.Yu. Sipatov, A.I. Fedorenko, A.E. Yunovich, Sov. Phys.-JETP, 67, 1431, 1988
  • 4. L. Kowalczyk, J. Sadowski, R.R. Galazka, A. Stachow-Wójcik, A.Yu. Sipatov, V.A. Smirnov, Acta Phys. Pol. A, 94, 357, 1998
  • 5. R. Świrkowicz, T. Story, J. Phys., Condens. Matter, 12, 8511, 2000
  • 6. H. Kepa, J. Kutner-Pielaszek, J. Blinowski, A. Twardowski, C.F. Majkrzak, T. Story, P. Kacman, R.R. Galazka, K. Ha, H.J.M. Swagten, W.J.M. de Jonge, A.Yu. Sipatov, V.V. Volobuev, T.M. Giebultowicz, Europhys. Lett., 56, 54, 2001
  • 7. M. Chernyshova, L. Kowalczyk, A. Szczerbakow, T. Story, C.J.P. Smits, H.J.M. Swagten, C.H.W. Swuste, J.K. Ha, W.J.M. de Jonge, A.Yu. Sipatov, V.V. Volobuev, J. Supercond., 16, 213, 2003
  • 8. C.J.P. Smits, A.T. Filip, H.J.M. Swagten, B. Koopmans, W.J.M. de Jonge, M. Chernyshova, L. Kowalczyk, K. Grasza, A. Szczerbakow, T. Story, W. Palosz, A.Yu. Sipatov, Phys. Rev. B, 69, 224410, 2004
  • 9. P. Sankowski, H. Kepa, P. Kacman, A.Yu. Sipatov, C.F. Majkrzak, T.M. Giebultowicz, Acta Phys. Pol. A, 105, 607, 2004
  • 10. H. Kepa, C.F. Majkrzak, P. Sankowski, P. Kacman, T.M. Giebultowicz, J. Alloys Comp., 401, 238, 2005
  • 11. J. Blinowski, P. Kacman, Phys. Rev. B, 64, 045302, 2001
  • 12. V.V. Zorchenko, A.Yu. Sipatov, V.V. Volobuev, Low Temp. Phys., 29, 1209, 2003
  • 13. L. Kowalczyk, V. Osinniy, M. Chernyshova, P. Dziawa, A. Boratyński, T. Story, C.J.P. Smits, H.J.M. Swagten, A.Yu. Sipatov, V.V. Volobuev, J. Alloys Comp., in press

Document Type

Publication order reference

Identifiers

YADDA identifier

bwmeta1.element.bwnjournal-article-appv110n216kz
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