Skip to main content
Log in

The effects of random fields on the critical and bicritical behavior of Mn x Zn1−x F2

  • Published:
Zeitschrift für Physik B Condensed Matter

Abstract

We have carried out a comprehensive study of the static and dynamic spin-spin correlations of Mn x Zn1−x F2 in a magnetic field. Samples withx=0.75 andx=0.5 have been studied. This system exhibits behavior closely related, if not identical, to that of the Random Field Ising Model (RFIM). An additional feature of Mn x Zn1−x F2 is that it exhibits an easily accessible bicritical point; thus one can study the changeover from the RFIM to the uniformXY model with a transverse random field. Quite generally, the instantaneous spin-spin correlations in a field are described by a combination of Lorentzian, Lorentzian-squared and delta function terms the latter corresponds to the long range order (LRO) component. In the Ising phase one finds history dependent behavior as discussed previously. In theXY phase, except very near the spin-flop boundary, one finds ergodic behavior withXY LRO and Lorentzian squared Ising fluctuations. Rather complicated instability effects are found all along the spin-flop boundary. Further, when one establishes LRO in theXY phase and lowers the field through the spin-flop value, one obtains a LRO Ising state in thex=0.75 sample whereas one obtains the field-cooled domain state in thex=0.50 sample. This dramatic difference in behavior is not understood. Our results on the RFIM aspects of the problem are consistent with our previous studies. The transition is dominated by the metastability effects with an underlying equilibrium transition which is either first order or weakly second order (β≈0). The underlying transition manifests itself directly in measurements of the dynamic response nearT N (H). From the data above the metastability boundary we deduce for the static correlation length exponentv=1.4±0.3 in good agreement with theory. We find for the RFIM crossover exponent φRF=1.5±0.2 where the errors represent the spread in values obtained from different techniques. Finally, we have determined in detail the field-temperature phase diagram of thex=0.5 sample including the critical behavior along the spin-flop line; the latter transition appears to be second order for an extended region.

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Similar content being viewed by others

References

  1. Fishman, S., Aharony, A.: J. Phys. C.12, L279 (1979)

    Google Scholar 

  2. Wong, P., von Molnar, S., Dimon, P.: Solid State Commun.48, 573 (1983)

    Google Scholar 

  3. Yoshizawa, H., Cowley, R.A., Shirane, G., Birgeneau, R.J.: Phys. Rev. Lett.48, 432 (1982)

    Google Scholar 

  4. Hagen, M., Cowley, R.A., Satija, S.K., Yoshizawa, H., Shirane, G., Birgeneau, R.J., Guggenheim, H.J.: Phys. Rev. B28, 2602 (1983)

    Google Scholar 

  5. Cowley, R.A., Yoshizawa, H., Shirane, G., Birgeneau, R.J.: Z. Phys. B — Condensed Matter58, 15 (1984)

    Google Scholar 

  6. Belanger, D.P., King, A.R., Jaccarino, V.: Phys. Rev. B.31, 4538 (1985)

    Google Scholar 

  7. Yoshizawa, H., Cowley, R.A., Shirane, G., Birgeneau, R.J.: Phys. Rev. B31, 4548 (1985)

    Google Scholar 

  8. Cowley R.A. Buyers, W.J.L.: J. Phys. C15, L1209 (1982)

    Google Scholar 

  9. Cowley, R.A., Yoshizawa, H., Shirane, G., Hagen, M., Birgeneau, R.J.: Phys. Rev. B30, 6650 (1984). See also Thurston, T.R., Peters, C.J., Birgeneau, R.J., Horn, P.M.: Phys. Rev. B38, 6614 (1988) for magnetic x-ray scattering studies of Mn x Zn1−x F2 at small fields

    Google Scholar 

  10. Shapira, Y., Oliveira, N.F., Jr., Foner, S.: Phys. Rev. B30, 6639 (1984)

    Google Scholar 

  11. For review, see Imry, I.: J. Stat. Phys.34, 849 (1984); Nattermann, T.N., Villain, J.: In: Phase transitions. See also Imbrie, J.Z: Phys. Rev. Lett.53, 1747 (1984)

    Google Scholar 

  12. Aharony, A., Imry, Y., Ma, S.K.: Phys. Rev. Lett.37, 1364 (1976); Parisi, G., Sourlas, N.: Phys. Rev. Lett.43, 744 (1978); Schwartz, M.: J. Phys. C.18, 135 (1985); Shapira, Y.: Phys. Rev. Lett.54, 154 (1985); Bray, A.T., Moore, M.A.: J. Phys. C18 L927 (1985); Berker, A.N., McKay, S.R: Phys. Rev. B33, 4712 (1986)

    Google Scholar 

  13. Young, A.P., Nauenberg, M.: Phys. Rev. Lett.54, L429 (1985)

    Google Scholar 

  14. Belanger, D.P., King, A.R., Jaccarino, V.: Phys. Rev. Lett.48, 1050 (1982)

    Google Scholar 

  15. Villain, J.: Phys. Rev. Lett.54, 1543 (1984); Grinstein, G., Fernandez, J.: Phys. Rev. B29, 6389 (1984)

    Google Scholar 

  16. Birgeneau, R.J., Cowley, R.A., Shirane, G., Yoshizawa, H.: Phys. Rev. Lett.54, 2147 (1985)

    Google Scholar 

  17. Villain, J.: J. Phys.46, 1843 (1985);

    Google Scholar 

  18. Fisher, D.S. Phys. Rev. Lett.56, 416 (1986)

    Google Scholar 

  19. Birgeneau, R.J., Shapira, Y., Shirane, G., Cowley, R.A., Yoshizawa, H.: Physica137B, 83 (1986); Cowley, R.A., Birgeneau, R.J., Shirane, G., Yoshizawa, H.: Phys. Scr. T13, 212 (1986)

    Google Scholar 

  20. Nikotin, O., Lindgard, P.A., Dietrich, O.W.: J. Phys. C2, 1168 (1969)

    Google Scholar 

  21. Schulhof, M.P., Nathans, R., Heller, P., Linz, A.: Phys. Rev. B4, 2254 (1971)

    Google Scholar 

  22. Coombs, G.J., Cowley, R.A., Buyers, W.J.L., Svensson, E.C., Holden, T.M., Jones, D.A.: J. Phys. C9, 2167 (1976)

    Google Scholar 

  23. Mitchell, P.W., Cowley R.A., Yoshizawa, H., Böni, P., Uemura, Y.J., Birgeneau, R.J.: Phys. Rev. B34, 4719 (1986)

    Google Scholar 

  24. Ramos, C.A., King, A.R., Jaccarino, V.: Phys. Rev. B37, 5483 (1988)

    Google Scholar 

  25. Shapira, Y.: Private communication

  26. Nattermann, T., Vilfan, I.: Phys. Rev. Lett.61, 223 (1988)

    Google Scholar 

  27. Aharony, A.: Europhys. Lett.1, 617 (1986)

    Google Scholar 

  28. Birgeneau, R.J., Cowley, R.A., Shirane, G., Yoshizawa, H., Belanger, D.P., King, A.R., Jaccarino, V.: Phys. Rev. B27, 6747 (1983)

    Google Scholar 

  29. Belanger, D.P., King, A.R., Jaccarino, V.: Phys. Rev. B34, 452 (1986)

    Google Scholar 

  30. Shapira, Y., Oliveira, N.F. Jr.: Phys. Rev. B27, 4336 (1983)

    Google Scholar 

  31. Newlove, S.A.: J. Phys. C16, L429 (1982)

    Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Rights and permissions

Reprints and permissions

About this article

Cite this article

Cowley, R.A., Shirane, G., Yoshizawa, H. et al. The effects of random fields on the critical and bicritical behavior of Mn x Zn1−x F2 . Z. Physik B - Condensed Matter 75, 303–321 (1989). https://doi.org/10.1007/BF01321818

Download citation

  • Received:

  • Revised:

  • Issue Date:

  • DOI: https://doi.org/10.1007/BF01321818

Keywords

Navigation