[1] Arndt N., Ganino C., "Metals and Society: an Introduction to Economic Geology", Springer, (2012) 160p.
[2] Pirajno F., "Hydrothermal Processes and Mineral Systems", Springer, (2009) 1250p.
[3] Large R.R., Gemmell J.B., Paulick H., Huston D., "The alteration box plot: a simple approach to understanding the relationship between alteration mineralogy and lithogeochemistry associated with VHMS deposite", Economic Geology, 96 (2001) 957-972.
[4] White N.C., Hedenquist J.W., "Epithermal gold deposits: styles, characteristics and Exploration", Society of Economic Geologists, Newsletter, 23 (1995) 9-13.
[5] Warren I., Simmons S.F., Mauk J.L., "Whole- rock geochemical techniques for evaluating hydrothermal alteration, mass changes, and compositional with epithermal Au-Ag mineralization", Economic Geology, 102 (2007) 923-948.
[6] Gemmell J.B., "Hydrothermal alteration associated whit the Gosonwng epithermal Au-Ag deposit Halmahera, Indonesia; Mineralogy, geochemistry, and exploration implications", Economic Geology, 102 (2007) 893-922.
[7] مهرپرتو م.، امینیافضل ع.، "نقشه زمینشناسی ورزقان با مقیاس 100000/1"، انتشارات سازمان زمین شناسی و اکتشافات معدنی کشور (1371).
[8] Alavi M., "Sedimentary and structural characteristics of the paleo-Tethys remnants Iran", Geol. Soc. Of Amer. Bull, 103 (1991) 983-992.
[9] Ixer R.A., Duller P.R., "Virtual atlas of opaque and ore minerals in their associations", internet digital atlas, sponsored by SEM (1998).
[10] Maclellan K.L., Lemtz D.R. McClenaghan S.H., "Petrology, Geochemistry and Genesis of the copper zone at the Burnswick No. 6 volcanogenic massive sulfide deposit, Bathurst mining camp, New Bruswick, Canada", Exploration and Mining Geology, 15 (2007) 53-75.
[11] Edwards A.B., "Textures of the ore minerals and their significance", 2nd ed, Melbourne: Austrasian Inst. Min. Metal (1965) 242p.
[12] Whitney L., Evans W., "Abbreviations for names of rock-forming minerals", American Mineralogist, 95 (2010) 185-187.
[13] Karakaya M.C., Karakaya N., Küpeli S., Yavuz F., "Mineralogy and geochemical behavior of trace elements of hydrothermal alteration types in the volcanogenic massive sulfide deposits, NE Turkey", Ore Geology Reviews, 48 (2012) 197-224.
[14] Rose A.W., "Zonal relations of wallrock alteration and sulfide distribution at porphyry copper deposits", Economic Geology, 65 (1970) 920-936.
[15] Ishikawa Y., Sawaguchi T., Iwaya S., Horiuchi M., "Delineation of prospecting targets for Kuroko deposits based on modes of volcanism of underlying dacite and alteration halos", Mining Geology, 26 (1976) 105-117.
[16] Gemmell J.B., Large R.R., "Stringer system and alteration zones underlying the Hellyer volcanic-hosted massive sulfide deposit, Tasmania, Australia", Economic Geology, 87 (1992) 620-649.
[17] Reyes A.G., "Petrology of Philippine geothermal systems and the application of alteration mineralogy to their assessment", Journal of Volcanology and Geothermal Research, 43 (1990) 279-309.
[18] Simmons S.F., White N.C., John D.A, "Geological characteristics of epithermal precious and base metal deposits", Economic Geology 100th Ann (2005) 485-522.
[19] Comsti M.E.C., Villones R.I., Dejesus C.V., Natividad A.R., Rollan L.A., Duroy A.C., "Mineralization at the Kelly gold mine; Baguio District, Philippines: fluid-inclusion and wall-rock alteration studies", Geochemical Exploration, 35 (1990) 341-362.
[20] Vikre P.G., "Precious metal vein systems in the National district, Humbolt County, Nevada". Economic Geology, 80 (1985) 360-393.