[1] Nisbet E. G., Pearce J. A., "Clinopyroxene composition of mafic lavas from different tectonic settings", Contributions to Mineralogy and Petrology 63 (1977) 161-173.
[2] Beccaluva L., Maccciotta G., Piccardo G. B., Zeda O., "Clinopyroxene composition of ophiolite basalts as petrogenetic indicator", Chemical Geology 77 (1989) 165-182.
[3] Princivalle F., Tirone M., Comin- Chiaramonti P., "Clinopyroxenes from spinel-peridotite mantle xenoliths from Nemby (Paraguay): crystal chemistry and petrological implications" Mineralogy and Petrology 70 (2000) 25–35.
[4] Zhu Y.F., Ogsasawara Y., "Clinopyroxene phenocrysts (with green salite cores) in trachybasalts: implications for two magma chambers under the Kokche NAPV UHP massif, North Kazakhstan", Journal of Asian Earth Sciences 22 (2004) 517–527.
[5] Dal Negro, A., Manoli S., Secco L., Piccirillo E.M., "Megacrystic clinopyroxenes from Victoria (Australia): crystal chemical comparisons of pyroxenes from high and low pressure regimes", European Journal of Mineralogy 1 (1989) 105–121.
[6] Malgarotto C., Molin G., Zanazzi F., "Crystal chemistry of clinopyroxenes from Filicudi and Salina (Aeolian Islands, Italy): geothermometry and barometry", European Journal of Mineralogy 5 (1993) 915–923.
[7] Annells R.N., Arthurton R.S., Bazley R.A.B., Davies R.G., Hamedi M.A.R., Rahimzadeh F., "Geological map of Iran, Shakran sheet 6162", scale 1:100,000, Geological Survey of Iran (1977).
]8[ نوری خانکهدانی ک.، "بررسی پترولوژیکی تودههای مونزونیتی شمال دیزان (منطقه طالقان)"، رساله کارشناسیارشد، دانشگاه شهید بهشتی (1375) 172 ص.
]9[ نوراللهی ز.، "پترولوژی و ژئوشیمی توده نفوذی بنیان سد کرج"، رساله کارشناسی ارشد، دانشکده علوم دانشگاه تهران (1383)، 130 ص.
[10] Beccaluva L., Macciotta G., Piccardo G. B., Zeda O., "Clinopyroxene composition of ophiolite basalts as petrogenetic indicator", Chemical Geology 77 (1989), 165-182.
[11] Morimoto N., "Nomenclature of pyroxenes", Fortschr mineral 66 (1988) 237-252.
[12] Kushiro I., "Si-Al relation in clinopyroxenes from igneous rocks", American Journal of Scince 258 (1960) 548-554.
[13] Le Bas M. J., "The role of aluminium in igneous clinopyroxenes with relation to their
parentage", American Journal of Scince 260 (1962) 267-288.
[14] Gamble R. P., Taylor L. A., "Crystal/liquid partitioning augite: effects of cooling rate", Earth and Planetary Science Letters 47 (1980) 21-33.
[15] Schweitzer E. L., Papike J. J., Bence A. E., "Statistical analysis of clinopyroxenes from deepsea basalts", American Mineralogist 64 (1979) 501-13.
[16] Leterrie J., Maury C.R., Thonon P., Girard D., Marchal M., "Clinopyroxene composition as a method of identification of the magmatic affinities of paleo-volcanic series", Earth and Planetary Science Letter, 59 (1982) 139-154.
[17] Berger J., Femenias O., Mercier J.C.C., Demaiffe D., "Ocean-floor hydrothermal metamorphism in the Limousin ophiolites (western French Massif Central): evidence of a rare preserved Variscan oceanic marker", Journal of Metamorphic Geology 23 (2005) 795–812.
[18] Letterrier J., Maury R. C., Thonon P., Girard D., Marchal M., "Clinopyroxene composition as a method of identification of the magmatic affinities of paleo-volcanic series", Earth and Planetary Science Letters 59 (1982) 139–54.
[19] Thompson R. N., "Some high pressure pyroxnenes", Mineralogical Magazine 39 (1974) 768-787.
[20] Kretz R., "Metamorphic Crystallization". John Wiley and Sons, Chichester and New York (1994).
[21] Bertrand P., Mercier J. C., "The mutual solubility of coexisting ortho- and clinopyroxene: toward an absolute geothermometer for natural system? ", Earth and Planetary Science Letters 76 (1985) 109-122.
[22] Lindsley I., "Pyroxene thermometry", American Mineralogist 68 (1983) 477-493.
[23] Soesoo A., "A multivariate statistical analysis of clinopyroxene composition: empirical coordinates for the crystallisation PTestimations", Geological Society of Sweden (Geologiska Föreningen) 119 (1997) 55-60.
[24] France L., Ildefonse B., Koepke J., Bech F., "A new method to estimate the oxidation state of basaltic series from microprobe analyses", Journal of Volcanology and Geothermal Research 189 (2010) 340-346.
[25] Kress V. C., Carmichael I. S. E., "The compressibility of silicate liquids containing Fe2O3 and the effect of composition, temperature, oxygen fugacity and pressure on their redox states", Contributions to Mineralogy and Petrology 108 (1991) 82-92.
[26] Botcharnikov R. E., Koepke J., Holtz F., McCammon C., Wilke M., "The effect of water activity on the oxidation and structural state of Fe in a ferro-basaltic melt", Geochimica et Cosmochimica Acta 69 (2005) 5071-5085.
[27] Cameron M., Papike J. J., "Structural and chemical variations", American Mineralogist 66 (1981) 1-50.
[28] Helz R.T., "Phase relationships of basalts in their melting range at pH2O = 5 kb as a function of oxygen fugacity", Journal of Petrology 14 (1973) 249-302.