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Spin alignment and Mössbauer hyperfine fields in the reentrant spin glass (Fe0.65Ni0.35)1-xMnx

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Abstract

We performed Mössbauer spectroscopy on the ternary alloy system (Fe0.65Ni0.35)1-xMnx in applied external magnetic fields. From the hyperfine field distributions the degree of spin alignment is determined as a function of temperature, manganese concentration and external magnetic field strength. We observed a field independent width (FWHM) of the hyperfine field distribution and interpret this in terms of a distribution of chemical environments rather than inhomogeneously distributed 3d magnetic moments.

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References

  1. J.B. M¨uller and J. Hesse, Z. Phys. B: Condensed Matter 54 (1983) 35.

    Article  Google Scholar 

  2. J. Hesse, Hyp. Interact. 47 (1989) 357.

    Article  Google Scholar 

  3. H.-H. Klauß, M. Hillberg, W. Wagener, M.A.C. de Melo, F.J. Litterst, M. Fricke, J. Hesse and E. Schreier, Hyp. Interact. 104 (1997) 319.

    Article  ADS  Google Scholar 

  4. R.A. Brand, Normos-90 M¨ossbauer Fitting Program Package (Wissenschaftliche Elektronik GmbH, Starnberg, 1992).

    Google Scholar 

  5. J. Hesse and A. R¨ubartsch, J. Phys. E 7 (1974) 526.

    Article  ADS  Google Scholar 

  6. M.Fricke, Ph.D. thesis, TU Braunschweig (1995).

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Baabe, D., Klauß, HH., Hillberg, M. et al. Spin alignment and Mössbauer hyperfine fields in the reentrant spin glass (Fe0.65Ni0.35)1-xMnx . Hyperfine Interactions 120, 263–266 (1999). https://doi.org/10.1023/A:1017083608828

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  • DOI: https://doi.org/10.1023/A:1017083608828

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