Determination of the electric field gradient tensor of Fe3+ in the M1 site of aegirine by single crystal Mössbauer spectroscopy
Author:
Affiliation:
1. Graduate School of Science, Osaka City University
2. Institute for Integrated Radiation and Nuclear Science, Kyoto University
Publisher
Japan Association of Mineralogical Sciences
Subject
Geology,Geophysics
Link
https://www.jstage.jst.go.jp/article/jmps/114/3/114_190109/_pdf
Reference22 articles.
1. Akasaka, M. and Shinno, I. (1992) Mössbauer spectroscopy and its recent application to silicate mineralogy. Journal of the Mineralogical Society of Japan, 21, 3–20 (in Japanese with English abstract).
2. Akasaka, M., Kimura, T. and Nagashima, M. (2013) X–ray Rietveld and 57Fe Mössbauer study of babingtonite from Kouragahana, Shimane Peninsula, Japan. Journal of Mineralogical and Petrological Sciences, 108, 121–130.
3. Bancroft, G.M., Maddock, A.G. and Burns, R.G. (1967): Applications of the Mössbauer effect to silicate mineralogy–I. Iron silicates of known crystal structure. Geochimica et Cosmochimica Acta, 31, 2219–2246.
4. Bancroft, G.M., Burns, R.G. and Stone, A.J. (1968) Applications of the Mössbauer effect to silicate mineralogy–II. Iron silicates of unknown and complex crystal structure. Geochimica et Cosmochimica Acta, 32, 547–559.
5. Bancroft, G.M. (1973) Mössbauer spectroscopy. An introduction for inorganic chemists and geochemists. New York, McGraw Hill.
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1. An Intensity Tensor and Electric Field Gradient Tensor for Fe3+ at M1 Sites of Aegirine–Augite Using Single-Crystal Mössbauer Spectroscopy;Minerals;2023-11-18
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3. Compositional dependence of intensity and electric field gradient tensors for Fe<sup>2+</sup> at the <i>M</i>1 site in Ca–rich pyroxene by single crystal Mössbauer spectroscopy;Journal of Mineralogical and Petrological Sciences;2022
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