Late Mesozoic and Cenozoic volcanism of the East Sikhote-Alin area (Russian Far East): A new synthesis of geological and petrological data

[1]  A. Grebennikov,et al.  Cretaceous and Paleogene granitoid suites of the Sikhote-Alin area (Far East Russia): Geochemistry and tectonic implications , 2016 .

[2]  A. Khanchuk,et al.  The Sikhote-Alin orogenic belt, Russian South East: Terranes and the formation of continental lithosphere based on geological and isotopic data , 2016 .

[3]  K. Litasov,et al.  Generation of hydrous-carbonated plumes in the mantle transition zone linked to tectonic erosion and subduction , 2015 .

[4]  S. Sano,et al.  Missing western half of the Pacific Plate: Geochemical nature of the Izanagi‐Pacific Ridge interaction with a stationary boundary between the Indian and Pacific mantles , 2015 .

[5]  S. Kodaira,et al.  Geochemical variations in Japan Sea back‐arc basin basalts formed by high‐temperature adiabatic melting of mantle metasomatized by sediment subduction components , 2015 .

[6]  R. Ernst,et al.  Intraplate geodynamics and magmatism in the evolution of the Central Asian Orogenic Belt , 2014 .

[7]  J. Nakajima,et al.  Behaviour of subducted water and its role in magma genesis in the NE Japan arc: A combined geophysical and geochemical approach , 2014 .

[8]  E. Takazawa,et al.  Repeated magmatism at 34 Ma and 23-20 Ma producing high magnesian adakitic andesites and transitional basalts on southern Okushiri Island, NE Japan arc , 2014 .

[9]  A. Grebennikov A-type granites and related rocks: Petrogenesis and classification , 2014 .

[10]  V. Popov,et al.  Petrogeochemical aspects of the Late Cretaceous and Paleogene ignimbrite volcanism of East Sikhote-Alin , 2014, Russian Journal of Pacific Geology.

[11]  A. Vorontsov,et al.  West Pacific-type convergent boundaries and their role in the formation of the Central Asian Fold Belt , 2013 .

[12]  Mo Xuanxue,et al.  Mantle Plumes and Lithosphere Motion in East Asia , 2013 .

[13]  M. Flower,et al.  Mantle Extrusion: A Model for Dispersed Volcanism and Dupal‐Like Asthenosphere in East Asia and the Western Pacific , 2013 .

[14]  I. Savov,et al.  Origin of Diverse Geochemical Signatures in Igneous Rocks from the West Philippine Basin: Implications for Tectonic Models , 2013 .

[15]  P. Spadea,et al.  The Indian Ocean‐Type Isotopic Signature in Western Pacific Marginal Basins: Origin and Significance , 2013 .

[16]  A. Khanchuk,et al.  Cenozoic volcanism of the eastern Sikhote Alin: Petrological studies and outlooks , 2013, Petrology.

[17]  V. Golozubov,et al.  Deformation of the Upper Cretaceous and Cenozoic complexes of the West Sakhalin terrane , 2012, Geotectonics.

[18]  A. Kozlovsky,et al.  Mechanisms of continental crust formation in the Central Asian Foldbelt , 2012, Geotectonics.

[19]  V. G. Sakhno,et al.  First data on U-Pb SHRIMP-II isotopic dating based on zircons of ash sediments from Cenozoic depressions in Southwest of Primorie , 2011 .

[20]  M. Blokhin,et al.  Discovery of Eocene adakites in Primor’e , 2011 .

[21]  M. Kuzmin,et al.  Phanerozoic hot spot traces and paleogeographic reconstructions of the Siberian continent based on interaction with the African large low shear velocity province , 2010 .

[22]  V. Popov,et al.  Potassic specifics of basalts from the Sinii Utes Depression: Geochemical correlations and problems of K-Ar dating (Southern Primorye region) , 2009 .

[23]  S. Nohda Formation of the Japan Sea basin: Reassessment from Ar–Ar ages and Nd–Sr isotopic data of basement basalts of the Japan Sea and adjacent regions , 2009 .

[24]  V. G. Sakhno,et al.  Geochronology of basalt volcanism on the Shufan Plateau (Primorye) , 2008 .

[25]  V. G. Sakhno,et al.  The U-Pb dating of extrusive-intrusive complexes in ore districts in the southern part of the Eastern Sikhote-Alin Volcanic Belt (Russia) , 2008 .

[26]  V. G. Sakhno,et al.  First U-Pb dating of volcanics from the East Sikhote-Alin belt , 2008 .

[27]  S. Rasskazov,et al.  Isotopic and geochemical characteristics of the late Miocene subalkali and alkali basalts of the southern part of the Russian Far East and the role of continental lithosphere in their genesis , 2007 .

[28]  J. Pearce,et al.  Hf Nd evidence for the origin and distribution of mantle domains in the SW Pacific , 2007 .

[29]  V. Popov,et al.  Basaltoids and carbonatite tuffs of Ambinsky volcano (Southwestern Primorye): Geology and genesis , 2007 .

[30]  Yu. A. Martynov,et al.  Maestrichtian-Danian andesite series of the Eastern Sikhote Alin: Mineralogy, geochemistry, and petrogenetic aspects , 2007 .

[31]  K. Uto,et al.  Stratigraphic review of Eocene to Oligocene successions along the eastern Japan Sea: Implication for early opening of the Japan Sea , 2007 .

[32]  M. Santosh,et al.  Superplume, supercontinent, and post-perovskite: Mantle dynamics and anti-plate tectonics on the Core–Mantle Boundary , 2007 .

[33]  V. G. Sakhno,et al.  Geochemistry of volcanic rocks from transform margins: Evidence from the Alchan basin, northwestern Primorie , 2006 .

[34]  Takeyoshi Yoshida,et al.  Contributions of Slab Fluid, Mantle Wedge and Crust to the Origin of Quaternary Lavas in the NE Japan Arc , 2006 .

[35]  A. Grebennikov,et al.  Fayalite rhyolites and a zoned magma chamber of the Paleocene Yakutinskaya volcanic depression in Primorye, Russia , 2006 .

[36]  B. Hanan,et al.  Contrasting origins of the upper mantle revealed by hafnium and lead isotopes from the Southeast Indian Ridge , 2004, Nature.

[37]  R. Arculus,et al.  Cenozoic Magmatism of the North-Eastern Eurasian Margin: The Role of Lithosphere Versus Asthenosphere , 2004 .

[38]  Y. Goto,et al.  Sr and Nd isotopic compositions of the magma source beneath north Hokkaido, Japan : comparison with the back-arc side in the NE Japan arc , 2004 .

[39]  C. Langmuir,et al.  Sr‐Nd‐Pb‐Hf Isotope Results from ODP Leg 187: Evidence for Mantle Dynamics of the Australian‐Antarctic Discordance and Origin of the Indian MORB Source , 2002 .

[40]  Calvin G. Barnes,et al.  A Geochemical Classification for Granitic Rocks , 2001 .

[41]  A. Khanchuk Pre-Neogene tectonics of the Sea-of-Japan region : A view from the Russian side , 2001 .

[42]  J. Blichert‐Toft,et al.  A hafnium isotope and trace element perspective on melting of the depleted mantle , 2001 .

[43]  S. Noble,et al.  Hf-Nd Element and Isotope Perspective on the Nature and Provenance of Mantle and Subduction Components in Western Pacific Arc-Basin Systems , 1999 .

[44]  H. Martin Adakitic magmas: modern analogues of Archaean granitoids , 1999 .

[45]  J. Mahoney,et al.  Tracing the Indian Ocean Mantle Domain Through Time: Isotopic Results from Old West Indian, East Tethyan, and South Pacific Seafloor , 1998 .

[46]  A. Hofmann,et al.  Mantle geochemistry: the message from oceanic volcanism , 1997, Nature.

[47]  V. Kuznetsov,et al.  Tertiary tectonics of the Sea of Okhotsk, Russia: Far‐field effects of the India‐Eurasia collision , 1996 .

[48]  B. Hanan,et al.  Lead and Helium Isotope Evidence from Oceanic Basalts for a Common Deep Source of Mantle Plumes , 1996, Science.

[49]  Takahiro Yamamoto,et al.  Late Cretaceous to early Paleogene paleomagnetic results from Sikhote Alin, far eastern Russia: implications for deformation of East Asia , 1995 .

[50]  L. Jolivet,et al.  Neogene strike-slip faulting in Sakhalin and the Japan Sea opening , 1994 .

[51]  Jin-Soo Lee,et al.  Cretaceous to Cenozoic volcanism in South Korea and in the Sea of Japan: magmatic constraints on the opening of the back-arc basin , 1994, Geological Society, London, Special Publications.

[52]  J. Mahoney,et al.  Southwestern limits of Indian Ocean Ridge Mantle and the origin of low 206Pb/204Pb mid‐ocean ridge basalt: Isotope systematics of the central Southwest Indian Ridge (17°–50°E) , 1992 .

[53]  H. Kagami,et al.  Temporal variation of Sr isotopic compositions of the Cretaceous to Tertiary volcanic rocks from Okushiri Island, Northeast Japan Sea , 1992 .

[54]  B. Cousens,et al.  49. A PB, SR, AND ND ISOTOPIC STUDY OF BASALTIC ROCKS FROM THE SEA OF JAPAN, LEGS 127/1281 , 1992 .

[55]  H. Bellon,et al.  47. GEOCHEMISTRY AND ISOTOPIC COMPOSITION OF VOLCANIC ROCKS FROM THE YAMATO BASIN: HOLE 794D, SEA OF JAPAN1 , 1992 .

[56]  K. Tamaki Tectonic synthesis and implications of Japan Sea ODP drilling , 1992 .

[57]  P. Hooper,et al.  The Cenozoic Basaltic Rocks of Eastern China: Petrology and Chemical Composition , 1991 .

[58]  L. Jolivet,et al.  Right‐lateral shear along the Northwest Pacific Margin and the India‐Eurasia Collision , 1990 .

[59]  M. Drummond,et al.  Derivation of some modern arc magmas by melting of young subducted lithosphere , 1990, Nature.

[60]  H. Nishi,et al.  GEOLOGIC AGES OF THE TAISHU GROUP AND THE KATSUMOTO FORMATION IN THE TSUSHIMA AND IKI ISLANDS, OFF NORTHWEST KYUSHU ON THE BASIS OF PLANKTONIC FORAMINIFERS , 1990 .

[61]  P. Piccoli,et al.  Tectonic discrimination of granitoids , 1989 .

[62]  A. D. Saunders,et al.  Contamination of Indian Ocean asthenosphere by the Kerguelen–Heard mantle plume , 1989, Nature.

[63]  J. Mahoney,et al.  Isotopic and geochemical provinces of the western Indian Ocean Spreading Centers , 1989 .

[64]  W. McDonough,et al.  Chemical and isotopic systematics of oceanic basalts: implications for mantle composition and processes , 1989, Geological Society, London, Special Publications.

[65]  Y. Tatsumi,et al.  Secular variation of magma source compositions beneath the Northeast Japan arc , 1988 .

[66]  J. Whalen,et al.  A-type granites: geochemical characteristics, discrimination and petrogenesis , 1987 .

[67]  L. Jolivet,et al.  Japan Sea: a pull-apart basin? , 1986 .

[68]  B. Dupré,et al.  Pb–Sr isotope variation in Indian Ocean basalts and mixing phenomena , 1983, Nature.

[69]  R. Armstrong,et al.  Cenozoic volcanic rocks of eastern China — secular and geographic trends in chemistry and strontium isotopic composition , 1982 .

[70]  David A. Wood,et al.  The application of a ThHfTa diagram to problems of tectonomagmatic classification and to establishing the nature of crustal contamination of basaltic lavas of the British Tertiary Volcanic Province , 1980 .

[71]  N. Nakamura Determination of REE, Ba, Fe, Mg, Na and K in carbonaceous and ordinary chondrites , 1974 .