Forsterite X050088

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Record 272 of 552  
Name: Forsterite
RRUFF ID: X050088
Ideal Chemistry: Mg2(SiO4)
Locality: San Carlos, Arizona, USA
Source: Caltech
Owner: Caltech
Description:
Status: The identification of this mineral has been determined only by Raman spectroscopy
Mineral Group: [ Olivine (61) ]
Quick search: [ All Forsterite samples (20) ]
RAMAN SPECTRUM 
Sample Description: de-polarized laser on unoriented sample
X Min:    X Max:    X Sort:
REFERENCES for Forsterite

American Mineralogist Crystal Structure Database Record: [view record]

Anthony J W, Bideaux R A, Bladh K W, and Nichols M C (1990) Handbook of Mineralogy, Mineral Data Publishing, Tucson Arizona, USA, by permission of the Mineralogical Society of America. [view file]

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Aurousseau M, Merwin H E (1928) Olivine: I. from the Hawaiian islands; II. pure forsterite, American Mineralogist, 13, 559-564

Ghose S (1962) The nature of Mg2+-Fe2+ distribution in some ferromagnesian silicate minerals, American Mineralogist, 47, 388-394   [view file]

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Wenk H R, Raymond K N (1973) Four new structure refinements of olivine, Zeitschrift für Kristallographie, 137, 86-105   [view file]

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Fujino K, Sasaki S, Takéuchi Y, Sadanaga R (1981) X-ray determination of electron distributions in forsterite, fayalite and tephroite, Acta Crystallographica, B37, 513-518

Nover G, Will G (1981) Structure refinements of seven natural olivine crystals and the influence of the oxygen partial pressure on the cation distribution, Zeitschrift für Kristallographie, 155, 27-45   [view file]

Nord A G, Annersten H, Filippidis A (1982) The cation distribution in synthetic Mg-Fe-Ni olivines, American Mineralogist, 67, 1206-1211   [view file]

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Kudoh Y, Takéuchi Y (1985) The crystal structure of forsterite Mg2SiO4 under high pressure up to 149 kb, Zeitschrift für Kristallographie, 171, 291-302

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Will G, Hoffbauer W, Hinze E, Lauterjung J (1986) The compressibility of forsterite up to 300 kbar measured with synchrotron radiation, Physica B and C, 139, 193-197   [view file]

Boström D (1987) Single-crystal X-ray diffraction studies of synthetic Ni-Mg olivine solid solutions, American Mineralogist, 72, 965-972   [view file]

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Vokurka K, Rieder M (1987) Thermal expansion and excess volumes of synthetic olivines on the Mg2SiO4-Ni2SiO4 join, Neues Jahrbuch für Mineralogie, Monatshefte, 1987, 97-106

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Kajiyoshi K, Suzuki I (1996) Thermal expansion of forsterite, Mg2SiO4, 1. Measurements, Okayama University, Earth Science Reports, 3, 25-32   [view file]

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Manghnani M H, Hurshur A, Smyth J R, Nestola F, Dera P, Sekar M, Amulele G, Frost D J (2013) Compressibility and structural stability of two variably hydrated olivine samples (Fo97Fa3) to 34 GPa by X-ray diffraction and Raman spectroscopy, American Mineralogist, 98, 1972-1979

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Yang Y, Wang Z, Smyth J R, Liu J, Xia Q (2015) Water effects on the anharmonic properties of forsterite, American Mineralogist, 100, 2185-2190

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Balan E, Blanchard M, Lazzeri M, Ingrin J (2017) Theoretical Raman spectrum and anharmonicity of tetrahedral OH defects in hydrous forsterite, European Journal of Mineralogy, 29, 201-212

Breitenfeld L B, Dyar M D, Carey C J, Tague T J, Wang P, Mullen T, Parente M (2018) Predicting olivine composition using Raman spectroscopy through band shift and multivariate analyses, American Mineralogist, 103, 1827-1836

Morrison S M, Downs R T, Blake D F, Prabhu A, Eleish A, Vaniman D T, Ming D W, Rampe E B, Hazen R M, Achilles C N, Treiman A H, Yen A S, Morris R V, Bristow T F, Chipera S J, Sarrazin P C, Fendrich K V, Morookian J M, Farmer J D, Des Marais D J, Craig P I (2018) Relationships between unit-cell parameters and composition for rock-forming minerals on Earth, Mars, and other extraterrestrial bodies, American Mineralogist, 103, 848-856   [view file]

Morrison S M, Downs R T, Blake D F, Vaniman D T, Ming D W, Hazen R M, Treiman A H, Achilles C N, Yen A S, Morris R V, Rampe E B, Bristow T F, Chipera S J, Sarrazin P C, Gellert R, Fendrich K V, Morookian J M, Farmer J D, Des Marais D J, Craig P I (2018) Crystal chemistry of martian minerals from Bradbury Landing through Naukluft Plateau, Gale crater, Mars, American Mineralogist, 103, 857-871   [view file]

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Knafelc J, Filiberto J, Ferré E C, Conder J A, Costello L, Crandall J R, Dyar M D, Friedman S A, Hummer D R, Schwenzer S P (2019) The effect of oxidation on the mineralogy and magnetic properties of olivine, American Mineralogist, 104, 694-702

Xu J, Fan D, Zhang D, Li B, Zhou W, Dera P K (2020) Investigation of the crystal structure of a low water content hydrous olivine to 29.9 GPa: A high-pressure single-crystal X-ray diffraction study, American Mineralogist, 105, 1857-1865

Geiger C A, Vielreicher N M, Dachs E (2021) Are the thermodynamic properties of natural and synthetic Mg2SiO4-Fe2SiO4 olivines the same?, American Mineralogist, 106, 317-321

Liu D, Guo X, Smyth J R, Wang X, Zhu X, Miao Y, Bai J, Ye Y (2021) High-temperature and high-pressure Raman spectra of Fo89Fa11 and Fo58Fa42 olivines: Iron effect on thermodynamic properties, American Mineralogist, 106, 1668-1678