Цитирование: | 1. Alexeiev, D.V., Kröner, A., Hegner, E., Rojas-Agramonte, Y., Biske, Y.S., Wong, J., Geng, H.Y., Ivleva, E.A., Mühlberg, M., Mikolaichuk, A.V., Liu, D., Middle to Late Ordovician arc system in the Kyrgyz Middle Tianshan: from arc–continent collision to subsequent evolution of a Palaeozoic continental margin. Gondwana Res. 39 (2016), 261–291.
2. Alexeiev, D.V., Bykadorov, V.A., Volozh, YuA., Sapozhnikov, R.B., Kinematic analysis of Jurassic grabens of southern Turgai and the role of the Mesozoic stage in the evolution of the Karatau–Talas–Ferghana strike-slip fault, southern Kazakhstan and Tian Shan. Geotectonics 51:2 (2017), 105–120.
3. Alexeiev, D.V., Kröner, A., Kovach, V.P., Tretyakov, A.A., Rojas-Agramonte, Ya, Degtyarev, K.E., Mikolaichuk, A.V., Wong, J., Kiselev, V.V., Evolution of cambrian and early Ordovician arcs in the Kyrgyz North Tianshan: insights from U-Pb zircon ages and geochemical data. Gondwana Res. 66 (2019), 93–115.
4. Bakirov, A.B., Maksumova, R.A., Geodynamic evolution of the Tien Shan lithosphere. Russ. Geol. Geophys. 42 (2001), 1359–1366.
5. Biske, YuS., Seltmann, R., Paleozoic Tian-Shan as a transitional region between the Rheic and Urals-Turkestan oceans. Gondwana Res. 17 (2010), 602–613.
6. Burtman, V.S., Tien Shan, Pamir, and Tibet: history and geodynamics of Phanerozoic oceanic basins. Geotectonics 44:5 (2010), 388–404.
7. Burtman, V.S., Tectonics and geodynamics of the Tian Shan in the middle and late Paleozoic. Geotectonics 49:4 (2015), 302–319.
8. Buslov, M.M., Watanabe, T., Saphonova, I.Yu, Iwata, K., Travin, A., Akiyama, M., Vendian-cambrian island arc system of the siberian continent in Gorny Altai (Russia, Central Asia). Gondwana Res. 5:4 (2002), 781–800.
9. Castillo, P.R., Adakite petrogenesis. Lithos 134–135 (2012), 304–316.
10. Cawood, P.A., Kröner, A., Collins, W.J., Kusky, T.M., Mooney, W.D., Windley, B.F., Accretionary orogens through Earth history. Geological Society, London, Special Publications 318 (2009), 1–36.
11. Chung, S.L., Liu, D., Ji, J., Chu, M.F., Lee, H.Y., Wen, D.J., Lo, C.H., Lee, T.Y., Qian, Q., Zhang, Q., Adakites from continental collision zones: melting of thickened lower crust beneath southern Tibet. Geology 31 (2003), 1021–1024.
12. Defant, M.J., Drummond, M.S., Derivation of some modern arc magmas by melting of young subducted lithosphere. Nature 347 (1990), 662–665.
13. De Grave, J., Glorie, S., Buslov, M.M., Izmer, A., Fournier-Carrie, A., Batalev, V., Vanhaecke, F., Elburg, M., Van den haute, P., The thermo-tectonic history of the Song-Kul Plateau, Kyrgyz Tien Shan: constraints by apatite and titanite thermochronometry and zircon U/Pb dating. Gondwana Res. 20:4 (2011), 745–763.
14. Degtyarev, K.E., Tectonic Evolution of the Early Paleozoic Island Arcs and Continental Crust Formation in Caledonides of Kazakhstan. Transactions 602. GEOS, 2012, Geological Institute RAS, Moscow, 289 (in Russian).
15. Degtyarev, K.E., Ryazantsev, A.V., Tretyakov, A.A., Tolmacheva, T.Yu, Yakubchuk, A.S., Kotov, A.B., Salnikova, E.B., Kovach, V.P., Neoproterozoic–early Paleozoic tectonic evolution of the western part of the Kyrgyz ridge (Northern Tian Shan) Caledonides. Geotectonics 47 (2013), 377–417.
16. Demina, L.I., Lomize, M.G., Avdonin, A.V., Geodynamic Characteristics of Peridotites from Songkel Area (Northern Tianshan). Series 4 – Geology, vol. 1, 1995, “Vestnik” of Moscow State University, 91–99 (in Russian).
17. Domeier, M., Torsvik, T.H., Plate tectonics in the late Paleozoic. Geosci. Front. 5 (2014), 303–350.
18. Drummond, M.S., Defant, M.J., A model for trondhjemite–tonalite–dacite genesis and crustal growth via slab melting: archaean to modern comparisons. J. Geophys. Res. 95 (1990), 21503–21521.
19. Dzhenchuraeva, A.V., Zacharov, I.L., Zhukov, J.V., Getman, O.F., Maksumova, R.A., Neevin, A.V., Nogaeva, L.P., Rinenberg, R.E., Stratified Rocks of Kyrgyzstan. Bishkek, 2015, 338 (in Russian).
20. Frost, B.R., Frost, C.D., A geochemical classification for feldspathic igneous rocks. J. Petrol. 49 (2008), 1955–1969.
21. Gao, J., Long, L.L., Klemd, R., Qian, Q., Liu, D.N., Xiong, X.M., Su, W., Liu, W., Wang, Y.T., Yang, E.Q., Tectonic evolution of the South Tianshan orogen and adjacent regions, NW China: geochemical and age constraints of granitoid rocks. Int. J. Earth Sci. 98 (2009), 1221–1238.
22. Ghes, M.D., Terrane Structure and Geodynamic Evolution of the Caledonides of Tian-Shan. 2008, Altyn Tamga Publishing House, Bishkek, 158 (in Russian).
23. Goldstein, S.J., Jacobsen, S.B., Nd and Sr isotopic systematics of river water suspended material: implications for crustal evolution. Earth Planet Sci. Lett. 87 (1988), 249–265.
24. Griffin, W.L., Pearson, N.J., Belousova, E., Jackson, S.E., van Achterbergh, E., O'Reilly, S.Y., Shee, S.R., The Hf isotope composition of cratonic mantle: LAM-MC-ICPMS analysis of zircon megacrysts in kimberlites. Geochem. Cosmochim. Acta 64 (2000), 133–147.
25. Hermann, J., Spandler, C.J., Sediment melts at sub-arc depths: an experimental study. J. Petrol. 49:4 (2008), 717–740.
26. Huang, Z.Y., Long, X.P., Kröner, A., Yuan, C., Wang, Q., Sun, M., Zhao, G.C., Wang, Y.J., Geochemistry, zircon U-Pb ages and Lu-Hf isotopes of early Paleozoic plutons in the northwestern Chinese Tianshan: petrogenesis and geological implications. Lithos 182–183 (2013), 48–66.
27. Jacobsen, S.B., Wasserburg, G.J., Sm–Nd evolution of chondrites and achondrites. II. Earth Planet Sci. Lett. 67 (1984), 137–150.
28. Jahn, B.M., The Central Asian orogenic belt and growth of the continental crust in the phanerozoic. Geological Society, London, Special Publications 226 (2004), 73–100.
29. Jahn, B.-M., Wu, F., Chen, B., Massive granitoid generation in Central Asia: Nd isotope evidence and implication for continental growth in the Phanerozoic. Episodes 23:2 (2000), 82–92.
30. Janoušek, V., Jiang, Y., Buriánek, D., Schulmann, K., Hanžl, P., Soejono, I., Kröner, A., Altanbaatar, B., Erban, V., Lexa, O., et al. Cambrian–Ordovician magmatism of the Ikh-Mongol arc system exemplified by the Khantaishir magmatic complex (Lake Zone, south–central Mongolia). Gondwana Res. 54 (2018), 122–149.
31. Jepson, G., Glorie, S., Konopelko, D., Gillespie, J., Danišík, M., Evans, N.J., Mamadjanov, Y., Collins, A.S., Thermochronological insights into the structural contact between the Tian Shan and Pamirs, Tajikistan. Terra. Nova 30 (2018), 95–104.
32. Kiselev, V.V., U−Pb Zircon Geochronology of Magmatic Rocks of the Northern Tien Shan. 1999, “Izvestiya” National Academy of Sciences of Kyrgyzstan, 21–33 (in Russian).
33. Kiselev, V.V., Maksumova, R.A., Geology of the Northern and Middle Tien Shan: principal outlines. Seltmann, R., Jenchuraeva, R., (eds.) Paleozoic Geodynamics and Gold Deposits in the Kyrgyz Tien Shan. IAGOD Guidebook Series 9, 2001, Natural History Museum, London, 21–28.
34. Konopelko, D., Klemd, R., Deciphering protoliths of the (U)HP rocks in the Makbal metamorphic complex, Kyrgyzstan: geochemistry and SHRIMP zircon geochronology. Eur. J. Mineral 28:6 (2016), 1233–1253.
35. Konopelko, D., Biske, G., Seltmann, R., Kiseleva, M., Matukov, D., Sergeev, S., Deciphering Caledonian events: timing and geochemistry of the Caledonian magmatic arc in the Kyrgyz Tien Shan. J. Asian Earth Sci. 32 (2008), 131–141.
36. Konopelko, D., Biske, G., Kullerud, K., Seltmann, R., Divaev, F., The Koshrabad granite massif in Uzbekistan: petrogenesis, metallogeny and geodynamic setting. Russ. Geol. Geophys. 52:12 (2011), 1563–1573.
37. Konopelko, D., Klemd, R., Petrov, S.V., Apayarov, F., Nazaraliev, B., Vokueva, O., Scherstén, A., Sergeev, S., Precambrian gold mineralization at Djamgyr in the Kyrgyz Tien Shan: tectonic and metallogenic implications. Ore Geol. Rev. 86 (2017), 537–547, 10.1016/j.oreeorev.2017.03.007.
38. Konopelko, D., Kullerud, K., Apayarov, F., Sakiev, K., Baruleva, O., Ravna, E., Lepekhina, E., SHRIMP zircon chronology of HP-UHP rocks of the Makbal metamorphic complex in the Northern Tien Shan, Kyrgyzstan. Gondwana Res. 22 (2012), 300–309.
39. Konopelko, D., Biske, G., Seltmann, R., Petrov, S.V., Lepekhina, E., Age and petrogenesis of the Neoproterozoic Chon-Ashu alkaline complex, and a new discovery of chalcopyrite mineralization in the eastern Kyrgyz Tien Shan. Ore Geol. Rev. 61 (2014), 175–191.
40. Konopelko, D., Biske, YuS., Kullerud, K., Ganiev, I., Seltmann, R., Brownscombe, W., Mirkamalov, R., Wang, B., Safonova, I., Kotler, P., Shatov, V., Sun, M., Wong, J., Early carboniferous metamorphism of the neoproterozoic South Tien Shan-Karakum basement: new geochronological results from baisun and kyzylkum, Uzbekistan. J. Asian Earth Sci. 177 (2019), 275–286.
41. Kröner, A., Alexeiev, D.V., Rojas-Agramonte, Y., Hegner, E., Wong, J., Xia, X., Belousova, E., Mikolaichuk, A.V., Seltmann, R., Liu, D.Y., Kiselev, V.V., Mesoproterozoic (Grenville-age) terranes in the Kyrgyz North Tianshan: zircon ages and Nd-Hf isotopic constraints on the origin and evolution of basement blocks in the southern Central Asian Orogen. Gondwana Res. 23 (2013), 272–295.
42. Kröner, A., Kovach, V., Belousova, E., Hegner, E., Armstrong, R., Dolgopolova, A., Seltmann, R., Alexeiev, D.V., Hoffmann, J.E., Wong, J., Sun, M., Cai, K., Wang, T., Tong, Y., Wilde, S.A., Degtyarev, K.E., Rytsk, E., Reassessment of continental growth during the accretionary history of the Central Asian orogenic belt. Gondwana Res. 25 (2014), 103–125.
43. Kröner, A., Kovach, V., Alexeiev, D., Wang, K.-L., Wong, J., Degtyarev, K., Kozakov, I., No excessive crustal growth in the Central Asian Orogenic Belt: further evidence from field relationships and isotopic data. Gondwana Res. 50 (2017), 135–166.
44. Le Maitre, R.W., Bateman, P., Dudek, A., Keller, J., Lameyre, J., Le Bas, M.J., Sabine, P.A., Schmid, R., Sorensen, H., Streckeisen, A., Woolley, A.R., Zanettin, B., A Classification of Igneous Rocks and Glossary of Terms. 1989, Blackwell, Oxford.
45. Lomize, M.G., Demina, L.I., Zarshchikov, A.A., The Kyrgyz-Terskei paleoceanic basin, Tien Shan. Geotectonics 31 (1997), 463–482.
46. Liu, B., Han, B.F., Xu, Z., Ren, R., Zhang, J.R., Zhou, J., Su, Li, Li, Q.L., The Cambrian initiation of intra-oceanic subduction in the southern Paleo-Asian Ocean: further evidence from the Barleik subduction related metamorphic complex in the West Junggar region, NW China. J. Asian Earth Sci. 123 (2016), 1–21.
47. Ma, X.X., Shu, L.S., Santosh, M., Li, J.Y., Petrogenesis and tectonic significance of an early Palaeozoic mafic-intermediate suite of rocks from the Central Tianshan, northwest China. Int. Geol. Rev. 55 (2013), 548–573.
48. Macpherson, C.G., Dreher, S.T., Thirlwall, M.F., Adakites without slab melting: high pressure differentiation of island arc magma, Mindanao, the Philippines. Earth Planet Sci. Lett. 243 (2006), 581–593.
49. Maksumova, R.A., Zakharov, I.L., Zima, M.B., Khristova, M.P., Chernyshuk, V.P., Imbricated Overthrust Structure of the Early Caledonides of the Tien-Shan with New Data on Stratigraphy of the Lower Palaeozoic Deposits. Precambrian and Lower Palaeozoic of the Tien-Shan. 1988, Ilim Publishing House, Frunze, 144–156 (in Russian).
50. Martin, H., Smithies, R.H., Rapp, R., Moyen, J.F., Champion, D., An overview of adakite, tonalite–trondhjemite–granodiorite (TTG), and sanukitoid: relationships and some implications for crustal evolution. Lithos 79 (2005), 1–24.
51. Middlemost, E.A.K., Naming materials in the magma/igneous rock system. Earth Sci. Rev. 37 (1994), 215–224.
52. Mikolaichuk, A.V., Kurenkov, S.A., Degtyarev, K.E., Rubtsov, V.I., Northern Tien Shan: main stages of geodynamic evolution. Geotectonics 31 (1997), 445–462.
53. Miyashiro, A., The Troodos ophiolitic complex was probably formed in an island arc. Earth Planet Sci. Lett. 19 (1973), 218–224.
54. Nakamura, N., Determination of REE, Ba, Fe, Mg, Na and K in carbonaceous and ordinary chondrites. Geochem. Cosmochim. Acta 38 (1974), 757–775.
55. Osmonbetov, K.O., Knauf, V.I., (eds.) Stratified and Intrusive Formations of Kyrgyzia, vols. 1 and 2, 1982, Yilim” Publishing House, Frunze, Kyrgyz SSR (in Russian).
56. Nikolaev, V.A., About principal structural line of Tianshan. Proceedings of All-Russian Mineralogical Society, Series 2:62 (1933), 347–354 (in Russian).
57. Pearce, J.A., Geochemical fingerprinting of oceanic basalts with applications to ophiolite classification and the search for Archean oceanic crust. Lithos 100 (2008), 14–48.
58. Pearce, J.A., Harris, N.B., Tindle, A.G., Trace element discrimination diagrams for the tectonic interpretation of granitic rocks. J. Petrol. 25–4 (1984), 956–983.
59. Pearce, J.A., Peate, D.W., Tectonic implications of the composition of volcanic arc magmas. Annu. Rev. Earth Planet Sci. 23 (1995), 251–285.
60. Popov, V.I., History if Depressions and Uplifts of the Western Tien Shan. 1938, Committee of Sciences of UzSSR Publishing House, Tashkent, 415 (in Russian).
61. Qian, Q., Gao, J., Klemd, R., He, G.Q., Song, B., Liu, D.N., Xu, R.H., Early Paleozoic tectonic evolution of the Chinese South Tianshan Orogen: constraints from SHRIMP zircon U–Pb geochronology and geochemistry of basaltic and dioritic rocks from Xiate, NW China. Int. J. Earth Sci. 98 (2009), 551–569.
62. Rapp, R.P., Shimizu, N., Norman, M.D., Applegate, G.S., Reaction between slab derived melts and peridotite in the mantle wedge: experimental constraints at 3.8 GPa. Chem. Geol. 160 (1999), 335–356.
63. Richards, J., Kerrich, R., Special paper: adakite-like rocks: their diverse origins and questionable role in metallogenesis. Econ. Geol. 102 (2007), 1–40.
64. Rojas-Agramonte, Y., Kröner, A., Alexeiev, D.V., Jeffreys, T., Khudoley, A.K., Wong, J., Geng, H., Shu, L., Semiletkin, S.A., Mikolaichuk, A.V., Kiselev, V.V., Seltmann, R., Detrital and igneous zircon ages for supracrustal rocks of the Kyrgyz Tianshan and implications for crustal growth in the southern Central Asian Orogenic Belt. Gondwana Res. 26 (2014), 957–974.
65. Ryazantsev, A.V., Degtyarev, K.E., Kotov, A.B., Sal'nikova, E.B., Anisimova, I.V., Yakovleva, S.Z., Ophiolite sections of the Dzhalair-Nayman zone, South Kazakhstan: their structure and age substantiation. Dokl. Earth Sci. 427A (2009), 902–906.
66. Safonova, I., Kotlyarov, A., Krivonogov, S., Xiao, W., Intra-oceanic arcs of the Paleo-Asian ocean. Gondwana Res. 50 (2017), 167–194.
67. Schiano, P., Monzier, M., Eissen, J.P., Martin, H., Koga, K.T., Simple mixing as the major control of the evolution of volcanic suites in the Ecuadorian Andes. Contrib. Mineral. Petrol. 160:2 (2010), 297–312.
68. Seltmann, R., Armstrong, R., Dolgopolova, A., Yakubchuk, A., Konopelko, D., Creaser, R.A., Morelli, R., Zhang, X., Chen, C., Granitic magmatism and related mineralization in the altaids: case study from the tienshan mineral belt. 18th Annual V.M. Goldschmidt Conference. Goldschmidt Conference Abstracts, A846. Supplement to Geochimica et Cosmochimica Acta, Vancouver, Canada, 2008.
69. Seltmann, R., Konopelko, D., Biske, G., Divaev, F., Sergeev, S., Hercynian postcollisional magmatism in the context of Paleozoic magmatic evolution of the Tien Shan orogenic belt. J. Asian Earth Sci. 42 (2011), 821–838.
70. Şengör, A.M.C., Natal'in, B.A., Burtman, V.S., Evolution of the Altaid tectonic collage and Paleozoic crust growth in Eurasia. Nature 364 (1993), 299–307.
71. Sun, S.S., McDonough, W.F., Chemical and isotopic systematic of oceanic basalts; implications for mantle composition and processes. Saunders, A.D., Norry, M.J., (eds.) Magmatism in the Ocean Basins, vol. 42, 1989, Geological Society of London, Special Publications, 313–345.
72. Tagiri, M., Yano, T., Bakirov, A., Nakajima, T., Uchiumi, S., Mineral parageneses and metamorphic P–T paths of UHP eclogites from Kyrgyzstan Tien-Shan. Isl. Arc 4 (1995), 280–292.
73. Thorkelson, D.J., Breitsprecher, K., Partial melting of slab window margins: genesis of adakitic and non-adakitic magmas. Lithos 79 (2005), 25–41.
74. Tursungaziev, B.T., Petrov, O.V., (eds.) Geological Map of Kyrgyz Republic, 2008, VSEGEI, Sankt-Petersburg scale 1:500000 (in Russian).
75. Wang, T., Jahn, B.M., Kovach, V.P., Tong, Y., Hong, D.W., Han, B.F., Nd-Sr isotopic mapping of the Chinese Altai and implications for continental growth in the Central Asian Orogenic Belt. Lithos 110:1–4 (2009), 359–372.
76. Wang, M., Zhang, J.J., Zhang, B., Qi, G.W., An Early Paleozoic collisional event along the northern margin of the Central Tianshan Block: constraints from geochemistry and geochronology of granitic rocks. J. Asian Earth Sci. 113 (2015), 325–338.
77. Windley, B.F., Alexeiev, D., Xiao, W., Kröner, A., Badarch, G., Tectonic models for accretion of the central Asian orogenic belt. J. Geol. Soc. Lond. 164 (2007), 31–47.
78. Xiao, W.J., Windley, B.F., Allen, M., Han, C.M., Paleozoic multiple accretionary and collisional tectonics of the Chinese Tianshan orogenic collage. Gondwana Res. 23 (2013), 1316–1341.
79. Zheng, R., Li, J., Zhang, J., Xiao, W., Wang, Q., Permian oceanic slab subduction in the southmost of Central Asian Orogenic Belt: evidence from adakite and high-Mg diorite in the southern Beishan. Lithos, 358–359, 2020, 105406.
80. Zonenshain, L.P., Kuzmin, M.I., Natapov, L.M., Geology of the USSR: A Plate-Tectonic Synthesis. 1990, American Geophysical Union, Washington, DC, 242 AGU Geodynamics Series 21.
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