Structural and dynamical properties of a new family of solid solutions: BaMn1-xZnxF4

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Structural and dynamical properties of a new family of solid solutions : BaMn1-xZnxF4. / Bordallo, H. N.; Almairac, R.; Bulou, A.; Nouet, J.

In: Journal of Physics Condensed Matter, Vol. 8, No. 27, 01.07.1996, p. 4993-5005.

Research output: Contribution to journalJournal articleResearchpeer-review

Harvard

Bordallo, HN, Almairac, R, Bulou, A & Nouet, J 1996, 'Structural and dynamical properties of a new family of solid solutions: BaMn1-xZnxF4', Journal of Physics Condensed Matter, vol. 8, no. 27, pp. 4993-5005. https://doi.org/10.1088/0953-8984/8/27/010

APA

Bordallo, H. N., Almairac, R., Bulou, A., & Nouet, J. (1996). Structural and dynamical properties of a new family of solid solutions: BaMn1-xZnxF4. Journal of Physics Condensed Matter, 8(27), 4993-5005. https://doi.org/10.1088/0953-8984/8/27/010

Vancouver

Bordallo HN, Almairac R, Bulou A, Nouet J. Structural and dynamical properties of a new family of solid solutions: BaMn1-xZnxF4. Journal of Physics Condensed Matter. 1996 Jul 1;8(27):4993-5005. https://doi.org/10.1088/0953-8984/8/27/010

Author

Bordallo, H. N. ; Almairac, R. ; Bulou, A. ; Nouet, J. / Structural and dynamical properties of a new family of solid solutions : BaMn1-xZnxF4. In: Journal of Physics Condensed Matter. 1996 ; Vol. 8, No. 27. pp. 4993-5005.

Bibtex

@article{b431b021983647878e94107f587d88e9,
title = "Structural and dynamical properties of a new family of solid solutions: BaMn1-xZnxF4",
abstract = "The new solid solutions BaMn1-xZnxF4 have been investigated by different experimental methods in the temperature range 10 K-300 K. X-ray and calorimetric measurements show that the incommensurate phase characteristic of BaMnF4 is also observed for x ≤ 0.25. Raman spectra were obtained for BaMn0.5Zn0.5F4 and BaMn0.25Zn0.75F4. Two low-frequency, temperature-dependent bands were observed over the whole temperature range investigated. These results are discussed in connection with structural disorder and the presence of precursor effects of an incommensurate phase transition.",
author = "Bordallo, {H. N.} and R. Almairac and A. Bulou and J. Nouet",
year = "1996",
month = jul,
day = "1",
doi = "10.1088/0953-8984/8/27/010",
language = "English",
volume = "8",
pages = "4993--5005",
journal = "Journal of Physics: Condensed Matter",
issn = "0953-8984",
publisher = "Institute of Physics Publishing Ltd",
number = "27",

}

RIS

TY - JOUR

T1 - Structural and dynamical properties of a new family of solid solutions

T2 - BaMn1-xZnxF4

AU - Bordallo, H. N.

AU - Almairac, R.

AU - Bulou, A.

AU - Nouet, J.

PY - 1996/7/1

Y1 - 1996/7/1

N2 - The new solid solutions BaMn1-xZnxF4 have been investigated by different experimental methods in the temperature range 10 K-300 K. X-ray and calorimetric measurements show that the incommensurate phase characteristic of BaMnF4 is also observed for x ≤ 0.25. Raman spectra were obtained for BaMn0.5Zn0.5F4 and BaMn0.25Zn0.75F4. Two low-frequency, temperature-dependent bands were observed over the whole temperature range investigated. These results are discussed in connection with structural disorder and the presence of precursor effects of an incommensurate phase transition.

AB - The new solid solutions BaMn1-xZnxF4 have been investigated by different experimental methods in the temperature range 10 K-300 K. X-ray and calorimetric measurements show that the incommensurate phase characteristic of BaMnF4 is also observed for x ≤ 0.25. Raman spectra were obtained for BaMn0.5Zn0.5F4 and BaMn0.25Zn0.75F4. Two low-frequency, temperature-dependent bands were observed over the whole temperature range investigated. These results are discussed in connection with structural disorder and the presence of precursor effects of an incommensurate phase transition.

UR - http://www.scopus.com/inward/record.url?scp=0030190514&partnerID=8YFLogxK

U2 - 10.1088/0953-8984/8/27/010

DO - 10.1088/0953-8984/8/27/010

M3 - Journal article

AN - SCOPUS:0030190514

VL - 8

SP - 4993

EP - 5005

JO - Journal of Physics: Condensed Matter

JF - Journal of Physics: Condensed Matter

SN - 0953-8984

IS - 27

ER -

ID: 209602455