Delamination of lithospheric mantle evidenced by Cenozoic potassic rocks in Yunnan, SW China: A contribution to uplift of the Eastern Tibetan Plateau
暂无分享,去创建一个
C. Yuan | Qiang Wang | S. Wilde | X. Xia | X. Long | Zhaofeng Zhang | Bei Chen
[1] Yongjun Lu,et al. Paleogene post-collisional lamprophyres in western Yunnan, western Yangtze Craton: Mantle source and tectonic implications , 2015 .
[2] Q. Wang,et al. Partial melting of thickened continental crust in central Tibet: Evidence from geochemistry and geochronology of Eocene adakitic rhyolites in the northern Qiangtang Terrane , 2015 .
[3] G. Panza,et al. Structural model of the lithosphere–asthenosphere system beneath the Qinghai–Tibet Plateau and its adjacent areas☆ , 2014 .
[4] P. Condamine,et al. Experimental melting of phlogopite-bearing mantle at 1 GPa: Implications for potassic magmatism , 2014 .
[5] Chengshan Wang,et al. Outward-growth of the Tibetan Plateau during the Cenozoic: A review ☆ , 2014 .
[6] Shenggao Lu,et al. A rock magnetic study on red palaeosols in Yun-Gui Plateau (Southwestern China) and evidence for uplift of Plateau , 2014 .
[7] Peter A. Cawood,et al. Intracontinental eocene-oligocene porphyry Cu mineral systems of Yunnan, Western Yangtze Craton, China: Compositional characteristics, sources, and implications for continental collision metallogeny , 2013 .
[8] Fu-Yuan Wu,et al. Petrology, geochemistry and ReOs isotopes of peridotite xenoliths from Maguan, Yunnan Province: Implications for the Cenozoic mantle replacement in southwestern China , 2013 .
[9] Kaihui Yang. A Plate Reconstruction of the Eastern Tethyan Orogen in Southwestern China , 2013 .
[10] Patrick C. McGuire,et al. Mineralogy and morphology of geologic units at Libya Montes, Mars: Ancient aqueously derived outcrops, mafic flows, fluvial features, and impacts , 2013 .
[11] L. Ding,et al. Paleogene high elevations in the Qiangtang Terrane, central Tibetan Plateau , 2013 .
[12] Peter A. Cawood,et al. Zircon SHRIMP U–Pb geochronology of potassic felsic intrusions in western Yunnan, SW China: Constraints on the relationship of magmatism to the Jinsha suture , 2012 .
[13] Qing Zhou,et al. Miocene potassic granite–syenite association in western Tibetan Plateau: Implications for shoshonitic and high Ba–Sr granite genesis , 2012 .
[14] L. Ding,et al. Thermochronologic evidence for plateau formation in central Tibet by 45 Ma , 2012 .
[15] R. Pysklywec,et al. Geodynamic models of mature continental collision: Evolution of an orogen from lithospheric subduction to continental retreat/delamination , 2011 .
[16] G. Gehrels,et al. Oligocene-Miocene Kailas basin, southwestern Tibet: Record of postcollisional upper-plate extension in the Indus-Yarlung suture zone , 2011 .
[17] Linqi Xia,et al. Cenozoic volcanism and tectonic evolution of the Tibetan plateau , 2011 .
[18] B. Leiss,et al. Oligo-Miocene shearing along the Ailao Shan–Red River shear zone: Constraints from structural analysis and zircon U/Pb geochronology of magmatic rocks in the Diancang Shan massif, SE Tibet, China , 2011 .
[19] D. Wyman,et al. Eocene north-south trending dikes in central Tibet: New constraints on the timing of east-west extension with implications for early plateau uplift? , 2010 .
[20] Yigang Xu,et al. Mineralogical and Geochemical Constraints on the Petrogenesis of Post-collisional Potassic and Ultrapotassic Rocks from Western Yunnan, SW China , 2010 .
[21] M. Searle,et al. Structural constraints on the timing of left-lateral shear along the Red River shear zone in the Ailao Shan and Diancang Shan Ranges, Yunnan, SW China , 2010 .
[22] Louis Moresi,et al. India–Asia convergence driven by the subduction of the Greater Indian continent , 2010 .
[23] P. Robinson,et al. Geochemical and Sr–Nd–Pb–O isotopic compositions of the post-collisional ultrapotassic magmatism in SW Tibet: Petrogenesis and implications for India intra-continental subduction beneath southern Tibet , 2009 .
[24] P. Molnar,et al. Slowing of India's convergence with Eurasia since 20 Ma and its implications for Tibetan mantle dynamics , 2009 .
[25] Xian‐Hua Li,et al. Variable involvements of mantle plumes in the genesis of mid-Neoproterozoic basaltic rocks in South China: A review , 2009 .
[26] A. Pêcher,et al. Eocene Tibetan plateau remnants preserved in the northwest Himalaya , 2009 .
[27] Jeremy P. Richards,et al. Postsubduction porphyry Cu-Au and epithermal Au deposits: Products of remelting of subduction-modified lithosphere , 2009 .
[28] O. Galland,et al. Direct measurement of strain rates in ductile shear zones: A new method based on syntectonic dikes , 2009 .
[29] D. Wyman,et al. Eocene melting of subducting continental crust and early uplifting of central Tibet: Evidence from central-western Qiangtang high-K calc-alkaline andesites, dacites and rhyolites , 2008 .
[30] G. Gehrels,et al. Mediterranean-style closure of the Paleo-Tethys ocean , 2008 .
[31] C. Macpherson. Lithosphere erosion and crustal growth in subduction zones: Insights from initiation of the nascent East Philippine Arc , 2008 .
[32] I. Campbell,et al. The Age of the Potassic Alkaline Igneous Rocks along the Ailao Shan–Red River Shear Zone: Implications for the Onset Age of Left‐Lateral Shearing: A Reply , 2008, The Journal of Geology.
[33] K. Karlstrom,et al. Assembly, configuration, and break-up history of Rodinia: A synthesis , 2008 .
[34] C. Macpherson,et al. Amphibole “sponge” in arc crust? , 2007 .
[35] L. Ding,et al. Postcollisional calc-alkaline lavas and xenoliths from the southern Qiangtang terrane, central Tibet , 2007 .
[36] Xian‐Hua Li,et al. Formation of the 1300-km-wide intracontinental orogen and postorogenic magmatic province in Mesozoic South China: A flat-slab subduction model , 2007 .
[37] M. Searle. Role of the Red River Shear zone, Yunnan and Vietnam, in the continental extrusion of SE Asia , 2006, Journal of the Geological Society.
[38] B. Burchfiel,et al. Propagation of surface uplift, lower crustal flow, and Cenozoic tectonics of the southeast margin of the Tibetan Plateau , 2006 .
[39] J. Blusztajn,et al. Large‐scale drainage capture and surface uplift in eastern Tibet–SW China before 24 Ma inferred from sediments of the Hanoi Basin, Vietnam , 2006 .
[40] A. Du,et al. Himalayan Cu–Mo–Au mineralization in the eastern Indo–Asian collision zone: constraints from Re–Os dating of molybdenite , 2006 .
[41] C. Chamberlain,et al. Earth science: The rise and growth of Tibet , 2006, Nature.
[42] B. Currie,et al. Palaeo-altimetry of the late Eocene to Miocene Lunpola basin, central Tibet , 2006, Nature.
[43] A. Yin,et al. Structural evolution of the Yushu-Nangqian region and its relationship to syncollisional igneous activity, east-central Tibet , 2005 .
[44] T. Harrison,et al. Cretaceous-Tertiary shortening, basin development, and volcanism in central Tibet , 2005 .
[45] K. Whipple,et al. Late Cenozoic uplift of southeastern Tibet , 2005 .
[46] W. Kidd,et al. Age of Initiation of the India‐Asia Collision in the East‐Central Himalaya , 2005, The Journal of Geology.
[47] Yigang Xu,et al. Domains and enrichment mechanism of the lithospheric mantle in western Yunnan: A comparative study on two types of Cenozoic ultrapotassic rocks , 2005 .
[48] S. Kelley,et al. Nature of the source regions for post-collisional, potassic magmatism in Southern and Northern Tibet from geochemical variations and inverse trace element modelling , 2004 .
[49] Wenqing Tang,et al. Surface uplift, tectonics, and erosion of eastern Tibet from large‐scale drainage patterns , 2004 .
[50] A. Hofmann. Sampling mantle heterogeneity through oceanic basalts: Isotopes and trace elements , 2003 .
[51] J. Kimura,et al. Evidence for slab melt/mantle reaction : Petrogenesis of Early Cretaceous and Eocene high-Mg andesites from the Kitakami Mountains, Japan , 2003 .
[52] J. Clemens. S-type granitic magmas—petrogenetic issues, models and evidence , 2003 .
[53] T. Harrison,et al. Direct dating of left‐lateral deformation along the Red River shear zone, China and Vietnam , 2003 .
[54] G. Wei,et al. Geochemical and Sr-Nd Isotopic Characteristics of Late Paleogene Ultrapotassic Magmatism in Southeastern Tibet , 2002 .
[55] Chengshan Wang,et al. Tertiary crustal shortening and peneplanation in the Hoh Xil region: implications for the tectonic history of the northern Tibetan Plateau , 2002 .
[56] Bertrand Meyer,et al. Oblique Stepwise Rise and Growth of the Tibet Plateau , 2001, Science.
[57] M. Menzies,et al. Exotic lithosphere mantle beneath the western Yangtze craton: Petrogenetic links to Tibet using highly magnesian ultrapotassic rocks , 2001 .
[58] Sun-Lin Chung,et al. Petrologic and geochemical constraints on the petrogenesis of Permian Triassic Emeishan flood basalts in southwestern China , 2001 .
[59] T. Harrison,et al. A tectonic model for Cenozoic igneous activities in the eastern Indo–Asian collision zone , 2001 .
[60] P. Jian,et al. The Jinshajiang–Ailaoshan Suture Zone, China: tectonostratigraphy, age and evolution , 2000 .
[61] A. Yin. Mode of Cenozoic east‐west extension in Tibet suggesting a common origin of rifts in Asia during the Indo‐Asian collision , 2000 .
[62] An Yin,et al. Geologic Evolution of the Himalayan-Tibetan Orogen , 2000 .
[63] R. Schuster,et al. Post-Collisional Potassic and Ultrapotassic Magmatism in SW Tibet: Geochemical and Sr-Nd-Pb-O Isotopic Constraints for Mantle Source Characteristics and Petrogenesis , 1999 .
[64] T. Furman,et al. Erosion of lithospheric mantle beneath the East African Rift system: geochemical evidence from the Kivu volcanic province , 1999 .
[65] B. Chappell. Aluminium saturation in I- and S-type granites and the characterization of fractionated haplogranites , 1999 .
[66] U. Schärer,et al. Age and origin of magmatism along the Cenozoic Red River shear belt, China , 1999 .
[67] P. Sylvester. Post-collisional strongly peraluminous granites , 1998 .
[68] J. Ayers,et al. Trace element modeling of aqueous fluid – peridotite interaction in the mantle wedge of subduction zones , 1998 .
[69] N. Rogers,et al. The Generation of Potassic Lavas from the Eastern Virunga Province, Rwanda , 1998 .
[70] Charles H. Langmuir,et al. The chemical composition of subducting sediment and its consequences for the crust and mantle , 1998 .
[71] W. Griffin,et al. Volatile-bearing minerals and lithophile trace elements in the upper mantle , 1997 .
[72] A. Hofmann,et al. Mantle geochemistry: the message from oceanic volcanism , 1997, Nature.
[73] N. Rogers,et al. Post-collision, Shoshonitic Volcanism on the Tibetan Plateau: Implications for Convective Thinning of the Lithosphere and the Source of Ocean Island Basalts , 1996 .
[74] G. Jenner,et al. Trace element partition coefficients for clinopyroxene and phlogopite in an alkaline lamprophyre from Newfoundland by LAM-ICP-MS , 1996 .
[75] T. Lee,et al. Cenozoic plate reconstruction of Southeast Asia , 1995 .
[76] F. Ryerson,et al. Rutile-aqueous fluid partitioning of Nb, Ta, Hf, Zr, U and Th: implications for high field strength element depletions in island-arc basalts , 1994 .
[77] E. Middlemost. Naming materials in the magma/igneous rock system , 1994 .
[78] T. Green. Experimental studies of trace-element partitioning applicable to igneous petrogenesis , 1994 .
[79] U. Schärer,et al. Duration of strike-slip movements in large shear zones: The Red River belt, China , 1994 .
[80] M. Thirlwall,et al. High Field Strength Element Anomalies in Arc Lavas: Source or Process? , 1994 .
[81] D. Wyman,et al. Archean Shoshonitic Lamprophyres of the Abitibi Subprovince, Canada: Petrogenesis, Age, and Tectonic Setting , 1993 .
[82] Peter Molnar,et al. Mantle dynamics, uplift of the Tibetan Plateau, and the Indian Monsoon , 1993 .
[83] N. Rogers,et al. Timing of Tibetan uplift constrained by analysis of volcanic rocks , 1993, Nature.
[84] W. McDonough,et al. Carbonatite metasomatism in the northern Tanzanian mantle: petrographic and geochemical characteristics , 1993 .
[85] C. Dupuy,et al. Zr/hf fractionation in intraplate basaltic rocks: Carbonate metasomatism in the mantle source , 1992 .
[86] R. Mitchell,et al. Petrology of Lamproites , 1991 .
[87] U. Schärer,et al. Intraplate tectonics in Asia: A precise age for large-scale Miocene movement along the Ailao Shan-Red River shear zone, China , 1990 .
[88] P. Piccoli,et al. Tectonic discrimination of granitoids , 1989 .
[89] J. Dewey. Extensional collapse of orogens , 1988 .
[90] P. England,et al. The mechanics of the Tibetan Plateau , 1988, Philosophical Transactions of the Royal Society of London. Series A, Mathematical and Physical Sciences.
[91] E. Watson,et al. Rutile saturation in magmas: implications for TiNbTa depletion in island-arc basalts , 1987 .
[92] H. Crecraft,et al. Partition coefficients for trace elements in silicic magmas , 1985 .
[93] C. Herzberg. Solidus and liquidus temperatures and mineralogies for anhydrous garnet-lherzolite to 15 GPa , 1983 .
[94] T. Sekine,et al. The formation of mantle phlogopite in subduction zone hybridization , 1982 .
[95] P. Molnar,et al. Convective instability of a thickened boundary layer and its relevance for the thermal evolution of , 1981 .
[96] B. Parsons,et al. Mantle convection and the thermal structure of the plates , 1978 .
[97] P. Conaghan,et al. Tectonic models of the Tibetan plateau , 1975 .
[98] T. Irvine,et al. A Guide to the Chemical Classification of the Common Volcanic Rocks , 1971 .
[99] H. Xing. Geochemical characteristics and geodynamic significance of Cenozoic basalts from Maguan and Pingbian, southeastern Yunnan Province , 2013 .
[100] J. Hertogen,et al. Potassic Magmatism in Western Sichuan and Yunnan Provinces, SE Tibet, China: Petrological and Geochemical Constraints on Petrogenesis , 2005 .
[101] Q. Zhang,et al. Tibetan tectonic evolution inferred from spatial and temporal variations in post-collisional magmatism , 2005 .
[102] D. Champion,et al. An overview of adakite, tonalite–trondhjemite–granodiorite (TTG), and sanukitoid: relationships and some implications for crustal evolution , 2005 .
[103] Li Jian. Shoshonitic magmatism in Dali-Jianchuan area, western Yunnan: a geochemical study of arc magmatism in a post-collisional strike-slip extensional setting. , 2003 .
[104] Zhao Xin. MINERALOGICAL CHARACTERISTICS AND PETROGENESIS OF DEEP-DERIVED XENOLITHS IN CENOZOIC SYENITE-PORPHYRY IN LIUHE, WESTERN YUNNAN PROVINCE , 2003 .
[105] Cheng Jie. EFFECT OF THE TIBETAN PLATEAU UPLIFTING ON GEOLOGICAL ENVIRONMENT OF THE YUNNAN PLATEAU , 2001 .
[106] D. Groves,et al. Direct Associations Between Potassic Igneous Rocks and Gold-Copper Deposits , 2000 .
[107] F. Siena,et al. Carbonatite Metasomatism of the Oceanic Upper Mantle: Evidence from Clinopyroxenes and Glasses in Ultramafic Xenoliths of Grande Comore, Indian Ocean , 1999 .
[108] R. Lacassin,et al. Shear heating in continental strike-slip shear zones:model and field examples , 1999 .
[109] W. McDonough,et al. Chemical and isotopic systematics of oceanic basalts: implications for mantle composition and processes , 1989, Geological Society, London, Special Publications.
[110] R. W. Le Maitre,et al. A Classification of igneous rocks and glossary of terms : recommendations of the International Union of Geological Sciences Subcommission on the Systematics of Igneous Rocks , 1989 .
[111] S. Taylor,et al. The continental crust: Its composition and evolution , 1985 .