Calcium Tschermak’s pyroxene, CaAlAlSiO6, from the Allende and Murray meteorites: EBSD and micro-Raman characterizations
暂无分享,去创建一个
G. Rossman | Chi Ma | S. Simon | L. Grossman
[1] D. Brownlee,et al. Meteoritics and Planetary Science Supplement , 2019 .
[2] A. Goresy,et al. Kushiroite, CaAlAlSiO6: A new mineral of the pyroxene group from the ALH 85085 CH chondrite, and its genetic significance in refractory inclusions , 2009 .
[3] G. Rossman,et al. Letter. Davisite, CaScAlSiO6, a new pyroxene from the Allende meteorite , 2009 .
[4] George R. Rossman,et al. Letter. Tistarite, Ti2O3, a new refractory mineral from the Allende meteorite , 2009 .
[5] G. Libourel,et al. Type C Ca, Al-rich inclusions from Allende: Evidence for multistage formation , 2007 .
[6] Giovanni Ferraris,et al. NEW MINERALS APPROVED IN 2005 AND NOMENCLATURE MODIFICATIONS APPROVED IN 2005 BY THE COMMISSION ON NEW MINERALS AND MINERAL NAMES, INTERNATIONAL MINERALOGICAL ASSOCIATION , 2006 .
[7] G. Rossman,et al. Ganterite, the barium mica Ba0.5K0.5Al2(Al1.5Si2.5)O10(OH)2, from Oreana, Nevada , 2006 .
[8] G. Rossman,et al. Ganterite, the barium mica Ba_(0.5)K_(0.5)Al_2(Al_(1.5)Si_(2.5))O_(10)(OH)_2, from Oreana, Nevada , 2006 .
[9] M. Pascal,et al. RELICS OF HIGH-TEMPERATURE CLINOPYROXENE ON THE JOIN Di–CaTs WITH UP TO 72 mol.% Ca(Al,Fe3+)AlSiO6 IN THE SKARNS OF CICLOVA AND MAGUREAUA VATEI, CARPATHIANS, ROMANIA , 2005 .
[10] A. Davis,et al. Formation of orange hibonite, as inferred from some Allende inclusions , 2001 .
[11] M. Reehuis,et al. A SINGLE-CRYSTAL NEUTRON-DIFFRACTION INVESTIGATION OF DIOPSIDE AT 10 K , 2000 .
[12] G. Redhammer. MOSSBAUER SPECTROSCOPY AND RIETVELD REFINEMENT ON SYNTHETIC FERRI-TSCHERMAK'S MOLECULE CAFE3+(FE3+SI)O6 SUBSTITUTED DIOPSIDE , 1998 .
[13] A. Davis,et al. Origin of hibonite‐pyroxene spherules found in carbonaceous chondrites , 1998 .
[14] M. Kimura,et al. Ca-,Al-rich inclusions in the unique chondrite ALH85085 - Petrology, chemistry, and isotopic compositions , 1993 .
[15] J. Pollack,et al. The dynamical evolution of the protosolar nebula , 1991 .
[16] M. Cosca,et al. Chemistry and structure of esseneite (CaFe (super 3+) AlSiO 6 ), a new pyroxene produced by pyrometamorphism , 1987 .
[17] H. S. Yoder,et al. Raman study of anorthite, calcium Tschermak's pyroxene, and gehlenite in crystalline and glassy states , 1983 .
[18] Nobuo,et al. STRUCTURE OF CaScAlSiO6-PYROXENE , 1978 .
[19] L. Grossman. Petrography and mineral chemistry of Ca-rich inclusions in the Allende meteorite , 1975 .
[20] S. Ghose,et al. Structure and Crystal Chemistry of Calcium Tschermak’s Pyroxene, CaAIAISiO6 , 1974 .
[21] E. Dowty,et al. Crystal-Structure Refinement and Optical Properties of a Ti3+ Fassaite from the Allende Meteorite: Reply , 1973 .
[22] L. Grossman. Condensation in the primitive solar nebula , 1972 .
[23] G. Rossman. AlSiO 6 , a new pyroxene from the Allende meteorite , 2009 .
[24] G. Rossman,et al. Barioperovskite, BaTiO3, a new mineral from the Benitoite Mine, California , 2008 .
[25] SHtv K. Snenvrl,et al. Raman study of anorthite , calcium Tschermak ' s pyroxene , and gehlenite in crystalline and glassy states , 2007 .
[26] Z. Sharp,et al. THE CANADIAN MINERALOGIST , 2006 .
[27] G. Mor. Crystal-chemical study of cation disordering in Al-rich and Al-poor orthopyroxenes from spinel lherzolite xenoliths , 1989 .
[28] J. Zussman,et al. Nomenclature of pyroxenes Subcommittee on Pyroxenes Commission on New Minerals and Mineral Names , 2022 .