A. Aftabi and H. Atapour, 2000-Regional aspects of shoshonitic volcanism in Iran. Episodes, pp.119-125

S. Alirezaei, H. Modrek, and F. Padyar, 2010-Chahmessi epithermal base and precious metal deposit kerman copper belt, south iran: investigation of genetic relation with meiduk porphyry system. ACROFI-III, pp.6-7

M. Berberian and G. C. King, Towards a paleogeography and tectonic evolution of Iran, Canadian Journal of Earth Sciences, vol.18, issue.2, pp.210-265
DOI : 10.1139/e81-019

D. Cooke, D. Braxton, N. C. White, and M. Rinne, 2015-Metal transport and ore deposition in porphyry copper± gold± molybdenum deposits-contrasting behavior between deep and shallow environments. SGA meeting, 13th, pp.275-278

R. Dénes, G. B. Kiss, P. Ivascanu, and I. Marton, 2015-Petrographic and Geochemical Study of the Porphyry and Epithermal Mineralization in the Bolcana magmatic-Hydrothermal System, SGA meeting, pp.509-511

M. Dimitrijevic, 1973 -Geology of Kerman region,Institute for Geological and Mining Exploration and Institution of Nuclear and Other Mineral Raw Materials,Beograd-Yugoslavia, Geological Survey, vol.52, p.334

S. Ebrahimi, S. Alirezaei, and Y. Pan, 2011-Geological setting, alteration, and fluid inclusion characteristics of Zaglic and Safikhanloo epithermal gold prospects, pp.133-147
DOI : 10.1144/sp350.8

M. Einali, R. J. Bakker, S. Alirezaei, and A. Azimzadeh, 2011-Laser Raman micro spectroscopy with fluid inclusions from the Darrehzar porphyry copper deposit, pp.82-83

H. Forster, 1978-Mesozoic? Cenozoic metallogensis in Iran ?geological society-London, pp.443-445
DOI : 10.1144/gsjgs.135.4.0443

J. B. Gemmell, Hydrothermal Alteration Associated with the Gosowong Epithermal Au-Ag Deposit, Halmahera, Indonesia: Mineralogy, Geochemistry, and Exploration Implications, Economic Geology, vol.102, issue.5, pp.893-922
DOI : 10.2113/gsecongeo.102.5.893

J. Hassanzadeh, 1993-Metallogenic and tectono-magmatic events in the SE sector of the Cenozoic active continental margin of Iran (Shahr-e-Babak area

W. Herrmann, G. R. Green, B. D. Mark, and G. Davidson, Lithogeochemical and Stable Isotopic Insights into Submarine Genesis of Pyrophyllite-Altered Facies at the Boco Prospect, Western Tasmania, Economic Geology, vol.104, issue.6, pp.775-792
DOI : 10.2113/gsecongeo.104.6.775

S. Hovakimyan, R. Moritz, R. Tayan, and M. Harutyunyan, 2015-The World-Class Kadjaran Mo-Cu-Porphyry Deposit,Southern Armenia, Lesser Caucasus: Structural Controls, Mineral Paragenesis and Fluid Evolution, SGA meeting, pp.295-298

J. Rad, A. R. Busch, and W. , Porphyry Copper Mineral Prospectivity Mapping Using Interval Valued Fuzzy Sets Topsis Method in Central Iran, Journal of Geographic Information System, vol.03, issue.04, pp.312-317
DOI : 10.4236/jgis.2011.34028

URL : http://doi.org/10.4236/jgis.2011.34028

A. M. Kerkhof and U. F. Hein, Fluid inclusion petrography, Lithos, vol.55, issue.1-4, pp.27-47
DOI : 10.1016/S0024-4937(00)00037-2

K. Kouzmanov and G. S. Pokrovski, 2012-Hydrothermal controls on metal distribution in (Cu-Au-Mo( porphyry systems, Soc Econ Geol Spec Pub, vol.16, pp.573-618

D. V. Lefebure and B. N. Church, 1996-Polymetallic Veins Ag-Pb-Zn ± Au in Selected British Columbia Mineral Deposit Profiles, Volume 2 Open File, pp.67-70

Y. B. Li and J. M. Liu, Calculation of sulfur isotope fractionation in sulfides, Geochimica et Cosmochimica Acta, vol.70, issue.7, pp.1789-1795
DOI : 10.1016/j.gca.2005.12.015

J. Mao, I. Zhang, F. Pirajno, D. Ishiyama, H. G. Su et al., Porphyry Cu???Au???Mo???epithermal Ag???Pb???Zn???distal hydrothermal Au deposits in the Dexing area, Jiangxi province, East China???A linked ore system, Ore Geology Reviews, vol.43, issue.1, pp.203-216, 2011.
DOI : 10.1016/j.oregeorev.2011.08.005

D. Moncada, R. Bodnar, and J. , 2012-Gangue mineral textures and fluid inclusion characteristics of the Santa Margarita Vein in the Guanajuato Mining District, Eur. J. Geosci, vol.4, issue.2, pp.300-309

F. Padyar, S. Alirezeai, M. Rahgoshay, A. Tarantola, O. Vanderhaeghe et al., 2016-Evolution of the mineralizing fluids and possible genetic links between Miduk porphyry copper and Latala vein type deposits. ACROFI VI meeting, p.6

F. Padyar, M. Rahgoshay, A. Tarantola, S. Alirezeai, and M. Pourmoafi, 2015-Geology and Genesis of the Latala Base Metal Deposit North Miduk, pp.509-511

S. C. Penniston-dorland, 2001-Illumination of vein quartz textures in a porphyry copper ore deposit using scanned cathodoluminescence: Grasberg Igneous Complex, Irian Indonesia, Am. Mineral, vol.86, p.666

G. Pokrovski, A. Y. Borisova, and A. Bychkov, Speciation and Transport of Metals and Metalloids in Geological Vapors, Reviews in Mineralogy and Geochemistry, vol.76, issue.1, pp.165-218
DOI : 10.2138/rmg.2013.76.6

C. Pudack, W. E. Halter, C. A. Heinrich, and T. Pettke, Evolution of Magmatic Vapor to Gold-Rich Epithermal Liquid: The Porphyry to Epithermal Transition at Nevados de Famatina, Northwest Argentina, Economic Geology, vol.104, issue.4, pp.449-477
DOI : 10.2113/gsecongeo.104.4.449

E. Roedder, 1992-Optical microscopy identification of the phases in fluid inclusions in minerals, Microscope, vol.40, pp.59-79

M. Sadeghi, G. Borg, and C. Gläber, 2008-Relationship between large-scale ring structures and lineaments with big porphyry copper deposits in Iran, Geosciences, vol.17, pp.199-205

R. H. Sillitoe, Porphyry Copper Systems, Economic Geology, vol.105, issue.1, pp.3-41
DOI : 10.2113/gsecongeo.105.1.3

M. L. Sirbescu and P. Nabelek, Dawsonite: An inclusion mineral in quartz from the Tin Mountain pegmatite, Black Hills, South Dakota, American Mineralogist, vol.88, issue.7, pp.1055-1060
DOI : 10.2138/am-2003-0714

C. M. Tome and F. Tornos, 2009-SEM-CL Analysis of Hydrothermal Quartz: Case Histories in

J. J. Wilkinson, Fluid inclusions in hydrothermal ore deposits, Lithos, vol.55, issue.1-4, pp.229-272
DOI : 10.1016/S0024-4937(00)00047-5

N. C. Williams and G. J. Davidson, POSSIBLE SUBMARINE ADVANCED ARGILLIC ALTERATION AT THE BASIN LAKE PROSPECT, WESTERN TASMANIA, AUSTRALIA, Economic Geology, vol.99, issue.5, pp.987-1002
DOI : 10.2113/gsecongeo.99.5.987