Application of Mossbauer spectroscopy for classification of ordinary chondrites - different database and different methods

被引:5
作者
Galazka-Friedman, Jolanta [1 ]
Wozniak, Marek [2 ]
Bogusz, Patrycja [1 ]
Jakubowska, Martyna [1 ]
Karwowski, Lukasz [3 ]
Duda, Przemyslaw [1 ]
机构
[1] Warsaw Univ Technol, Fac Phys, Koszykowa 75, PL-00662 Warsaw, Poland
[2] Univ Warsaw, Fac Biol, Miecznikowa 1, PL-02096 Warsaw, Poland
[3] Univ Silesia Katowice, Fac Earth Sci, Ul Bedzinska 60, PL-41200 Sosnowiec, Poland
来源
HYPERFINE INTERACTIONS | 2019年 / 241卷 / 01期
关键词
Classification of meteorites; Ordinary chondrites; Mossbauer spectroscopy; Multidimensional discriminant analysis; Mahalanobis distance; Meteorite Goronyo; METEORITES; FALLEN;
D O I
10.1007/s10751-019-1661-0
中图分类号
O64 [物理化学(理论化学)、化学物理学]; O56 [分子物理学、原子物理学];
学科分类号
070203 ; 070304 ; 081704 ; 1406 ;
摘要
Classification of the meteorites is very complex, but in general all meteorites can be divided into three groups: stony, iron and stony-iron. Ordinary chondrites are the most numerous group among stony meteorites. In this paper, we present short review of the methods of classification of ordinary chondrites. The classical method for the classification of ordinary chondrites is based on the determination of the content of fayalite in olivine and of the content of ferrosilite in pyroxene with the use of electron microprobe. This method was proposed in 1967. Studies on the application of Mossbauer spectroscopy to classification of ordinary chondrites were carried out since early 2000 in four Mossbauer laboratories. Mossbauer groups from Kanpur, Ekaterinburg and Canberra suggested qualitative methods of classification of ordinary chondrites. Warsaw group created quantitative method called the "4M method". This name derives from following words: meteorites, Mossbauer spectroscopy, multidimensional discriminant analysis, Mahalanobis distance. In this publication, we describe the use of 4M method for reclassification of meteorite Goronyo.
引用
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页数:12
相关论文
共 20 条
[1]   Classification of Meteorites - Mossbauer Comparative Studies of Three Ordinary Chondrites Measured in Different Laboratories [J].
Bogusz, P. ;
Brzozka, K. ;
Gorka, B. ;
Szumiata, T. ;
Wozniak, M. ;
Galazka-Friedman, J. .
ACTA PHYSICA POLONICA A, 2018, 134 (05) :1070-1075
[2]   An 57Fe Mossbauer study of the ordinary chondrite meteorite Lynch 001 [J].
Elewa, Nancy N. ;
Cadogan, J. M. .
HYPERFINE INTERACTIONS, 2016, 238
[3]   Mossbauer spectroscopy-a useful method for classification of meteorites? [J].
Galazka-Friedman, J. ;
Wozniak, M. ;
Duda, P. ;
Rzepecka, P. ;
Jakubowska, M. ;
Karwowski, L. .
HYPERFINE INTERACTIONS, 2017, 238
[4]   Mossbauer studies of Soltmany and Shisr 176 meteorites - comparison with other ordinary chondrites [J].
Galazka-Friedman, J. ;
Szlachta, K. ;
Karwowski, L. ;
Wozniak, M. .
HYPERFINE INTERACTIONS, 2014, 226 (1-3) :593-600
[5]  
GAZKAFRIEDMAN J, 2019, ACTA SOC METHEOR POL, V10, P23
[6]  
JAKUBOWSKA M, 2019, ACTA SOC METHEOR POL, V10, P34
[7]  
JAKUBOWSKA M, 2019, ACTA SOC METHEOR POL, V10, P29
[8]  
Keil K, 1964, J GEOPHYS RES, V69, P3487, DOI 10.1029/JZ069i016p03487
[9]   MOSSBAUER-SPECTROSCOPY OF FE-57 AND THE EVOLUTION OF THE SOLAR-SYSTEM [J].
KNUDSEN, JM .
HYPERFINE INTERACTIONS, 1989, 47-8 (1-4) :3-31
[10]  
Koblitz J., 2012, METBASE METEORITE DA