Study of Chelyabinsk LL5 meteorite fragments with different lithology using Mössbauer spectroscopy with a high velocity resolution
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Z. Homonnay | M. Oshtrakh | A. A. Maksimova | V. A. Semionkin | E. Petrova | V. Grokhovsky | E. Kuzmann | Z. Klencsár
[1] A. Chukin,et al. Comparative study of Aliskerovo, Anyujskij, Sikhote-Alin and Sterlitamak iron meteorites using Mössbauer spectroscopy , 2016 .
[2] Z. Homonnay,et al. A comparative study of troilite in bulk ordinary chondrites Farmington L5, Tsarev L5 and Chelyabinsk LL5 using Mössbauer spectroscopy with a high velocity resolution , 2014 .
[3] J. Sitek,et al. Analyses of Rumanová meteorite , 2014 .
[4] K. Szlachta,et al. Mössbauer studies of Soltmany and Shisr 176 meteorites – comparison with other ordinary chondrites , 2014 .
[5] Tomas Kohout,et al. Mineralogy, reflectance spectra, and physical properties of the Chelyabinsk LL5 chondrite - insight into shock induced changes in asteroid regoliths , 2013, 1309.6081.
[6] J. Cadogan,et al. An 57Fe Mössbauer study of three Australian L5 ordinary-chondrite meteorites: dating Kinclaven–001 , 2013 .
[7] V. P. Kolotov,et al. Analytical results for the material of the Chelyabinsk meteorite , 2013, Geochemistry International.
[8] M. Oshtrakh,et al. Mössbauer spectroscopy with a high velocity resolution applied for the study of meteoritic iron-bearing minerals , 2013 .
[9] V. A. Semionkin,et al. Mössbauer spectroscopy with a high velocity resolution: advances in biomedical, pharmaceutical, cosmochemical and nanotechnological research. , 2013, Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy.
[10] J. Sitek,et al. Phase analysis of Košice meteorite: Preliminary results , 2012 .
[11] J. Cadogan,et al. Mössbauer study of the Ordinary-Chondrite meteorite Thylacine Hole–001 , 2012 .
[12] G. Andreozzi,et al. Synthesis and Mössbauer characterization of Fe 1+x Cr 2-x O 4 (0 ≤ x ≤ 2/3) spinel single crystals , 2011 .
[13] O. Milder,et al. A high velocity resolution Mössbauer spectrometric system for biomedical research , 2010 .
[14] L. Dobrzyński,et al. The method of invariants in 57Fe Mössbauer spectroscopy on selected examples , 2010 .
[15] O. Milder,et al. Mössbauer spectroscopy with high velocity resolution: an increase of analytical possibilities in biomedical research , 2009 .
[16] M. Oshtrakh,et al. Mossbauer spectroscopy with high velocity resolution in the study of iron-bearing minerals in meteorites , 2009 .
[17] L. Dobrzyński,et al. Mössbauer data analysis based on invariants and application to UFe 5 Sn , 2008 .
[18] M. Oshtrakh,et al. Hyperfine interactions in metal extracted from ordinary chondrite Tsarev L5: A study using Mössbauer spectroscopy with high-velocity resolution , 2008 .
[19] V. A. Semionkin,et al. A study of ordinary chondrites by Mössbauer spectroscopy with high‐velocity resolution , 2008 .
[20] V. A. Semionkin,et al. Determination of quadrupole splitting for 57Fe in M1 and M2 sites of both olivine and pyroxene in ordinary chondrites using Mössbauer spectroscopy with high velocity resolution , 2007 .
[21] M. Oshtrakh,et al. Study of ordinary chondrites by Mössbauer spectroscopy with high velocity resolution: identification of M1 and M2 sites in silicate phases , 2007 .
[22] C. Brinkmann,et al. Octahedral cation partitioning in Mg,Fe2+-olivine. Mössbauer spectroscopic study of synthetic (Mg0.5 Fe2+0.5)2SiO4 (Fa50) , 2006 .
[23] G. Cressey,et al. A Mössbauer spectroscopy and X‐ray diffraction study of ordinary chondrites: Quantification of modal mineralogy and implications for redox conditions during metamorphism , 2005 .
[24] R. P. Tripathi,et al. Systematics of Mössbauer absorption areas in ordinary chondrites and applications to a newly fallen meteorite in Jodhpur, India , 2003 .
[25] R. P. Tripathi,et al. Mössbauer Spectroscopic Studies of an Oxidized Ordinary Chondrite Fallen at Itawa-Bhopji, India , 2002 .
[26] M. Urbański,et al. A Mössbauer Study of Meteorites — A possible Criterion to Identify Meteorites from the same Parent Body? , 2002 .
[27] F. Grandjean,et al. A Mössbauer spectral study of the Jilin meteorite , 1998 .
[28] Z. Klencsár,et al. User-friendly software for Mössbauer spectrum analysis , 1996 .
[29] R. Jeanloz,et al. Magnetic ordering transition in Mg (sub 0.9) Fe (sub 0.1) SiO 3 orthopyroxene , 1992 .
[30] E. Jarosewich,et al. Chemical analyses of meteorites: A compilation of stony and iron meteorite analyses , 1990 .
[31] T. Ericsson,et al. A Mössbauer investigation of natural troilite from the Agpalilik meteorite , 1988 .
[32] R. T. Dodd. Meteorites. A petrologic-chemical synthesis. , 1981 .
[33] I. Campbell,et al. Hyperfine field and magnetic moments in b.c.c. Fe-Co and Fe-Ni , 1974 .
[34] E. Dowty,et al. Mössbauer Spectra of Synthetic Hedenbergite-Ferrosilite Pyroxenes , 1973 .