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2021 | OriginalPaper | Buchkapitel

17. Pluton und Batholith

verfasst von : Gottfried Hofbauer

Erschienen in: Granit - Geschichte und Bedeutung

Verlag: Springer Berlin Heidelberg

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Anmerkung

Granit – soweit das Auge blickt. Der Korsisch-Sardische Batholith ist einer der größten Granitkomplexe Europas. Man trifft darin auf unterschiedlichste Landschaften: Hochflächen, tief eingeschnittene Täler und nur schwer zugängliche Gebirge. Der „Batholith“ – ein Begriff, einst geschaffen für Granite, die sich in „unendliche Teufe“ erstrecken und unermesslichen Raum in Anspruch nehmen – was ist aus dieser Idee geworden?

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Literatur
Zurück zum Zitat Acocella V (2000): Space accommodation by roof lifting during pluton emplacement at Amiata (Italy). Terra Nova 12:149–155.CrossRef Acocella V (2000): Space accommodation by roof lifting during pluton emplacement at Amiata (Italy). Terra Nova 12:149–155.CrossRef
Zurück zum Zitat Bagdonas DA, Frost CD, Fanning CM (2016) The origin of extensive Neoarchean high-silica batholiths and the nature of intrusive complements to silicic ignimbrites: Insights from the Wyoming batholith, U.S.A. American Mineralogist 101:1332–1347.CrossRef Bagdonas DA, Frost CD, Fanning CM (2016) The origin of extensive Neoarchean high-silica batholiths and the nature of intrusive complements to silicic ignimbrites: Insights from the Wyoming batholith, U.S.A. American Mineralogist 101:1332–1347.CrossRef
Zurück zum Zitat Breitkreutz C, Petford N (2004) Physical Geology of High Level Magmatic Systems: Introduction. Geological Society of London, Spec. Publication 234:1–4.CrossRef Breitkreutz C, Petford N (2004) Physical Geology of High Level Magmatic Systems: Introduction. Geological Society of London, Spec. Publication 234:1–4.CrossRef
Zurück zum Zitat Breitkreutz C, Rocchi S (Hrsg.) (2018) Physical Geology of Shallow Magmatic Systems: Dykes, Sills and Laccoliths. Springer, Berlin. Breitkreutz C, Rocchi S (Hrsg.) (2018) Physical Geology of Shallow Magmatic Systems: Dykes, Sills and Laccoliths. Springer, Berlin.
Zurück zum Zitat Burchardt, Steffi (Hrsg) (2018) Volcanic and Igneous Plumbing Systems: Understanding Magma Transport, Storage, and Evolution in the Earth‘s Crust. Elsevier, Amsterdam. Burchardt, Steffi (Hrsg) (2018) Volcanic and Igneous Plumbing Systems: Understanding Magma Transport, Storage, and Evolution in the Earth‘s Crust. Elsevier, Amsterdam.
Zurück zum Zitat Cruden AR (1998) On the emplacement of tabular granites. Journal Geol. Soc. London 155:853–862CrossRef Cruden AR (1998) On the emplacement of tabular granites. Journal Geol. Soc. London 155:853–862CrossRef
Zurück zum Zitat Cruden AR, Weinberg RF (2018) Mechanisms of Magma Transport and Storage in the Lower and Middle Crust – Magma Segregation, Ascent and Emplacement. In: Burchard, S. (Hrsg.), Volcanic and Igneous Plumbing Systems:13–53. Cruden AR, Weinberg RF (2018) Mechanisms of Magma Transport and Storage in the Lower and Middle Crust – Magma Segregation, Ascent and Emplacement. In: Burchard, S. (Hrsg.), Volcanic and Igneous Plumbing Systems:13–53.
Zurück zum Zitat Elston WE (2008) When batholiths exploded: The Mogollon-Datil volcanic field, southwestern New Mexico. In New Mexico Geological Society, 59th Annual Field Conference Guidebook:117–128. Elston WE (2008) When batholiths exploded: The Mogollon-Datil volcanic field, southwestern New Mexico. In New Mexico Geological Society, 59th Annual Field Conference Guidebook:117–128.
Zurück zum Zitat Le Fort P (1986) Metamorphism and magmatism during the Himalayan collision. Geological Society, London, Special Publications, 19:159–172.CrossRef Le Fort P (1986) Metamorphism and magmatism during the Himalayan collision. Geological Society, London, Special Publications, 19:159–172.CrossRef
Zurück zum Zitat Lipman PW, Bachmann O (2015) Ignimbrites to batholiths: Integrating perspectives from geological, geophysical, and geochronological data. Geosphere 11:705–743.CrossRef Lipman PW, Bachmann O (2015) Ignimbrites to batholiths: Integrating perspectives from geological, geophysical, and geochronological data. Geosphere 11:705–743.CrossRef
Zurück zum Zitat Petterson MG, Treloar PJ (2004) Volcanostratigraphy of arc volcanic sequences in the Kohistan arc, North Pakistan: volcanism within island arc, back-arc-basin, and intra-continental tectonic settings. Journal of Volcanology and Geothermal Research, 130:147–178.CrossRef Petterson MG, Treloar PJ (2004) Volcanostratigraphy of arc volcanic sequences in the Kohistan arc, North Pakistan: volcanism within island arc, back-arc-basin, and intra-continental tectonic settings. Journal of Volcanology and Geothermal Research, 130:147–178.CrossRef
Zurück zum Zitat Pitcher WS (1993) The nature and origin of granite. Chapman and Hall, London.CrossRef Pitcher WS (1993) The nature and origin of granite. Chapman and Hall, London.CrossRef
Zurück zum Zitat Savov I, Meliksetian K., Ralf, H, Gevorg N et al. (2014) Collision zone magmatism aids continental crustal growth. EGUGA:2235. Savov I, Meliksetian K., Ralf, H, Gevorg N et al. (2014) Collision zone magmatism aids continental crustal growth. EGUGA:2235.
Zurück zum Zitat Skidmore CN (2013) Exploring connections between a very large volume igmimbrite and an intracaldera pluton: Intrusions related to the Oligocene Wah Wah Springs Tuff, Western US. - Thesis Master of Science (Brigham Young University), Utah. Skidmore CN (2013) Exploring connections between a very large volume igmimbrite and an intracaldera pluton: Intrusions related to the Oligocene Wah Wah Springs Tuff, Western US. - Thesis Master of Science (Brigham Young University), Utah.
Zurück zum Zitat Srimal N, Basu A., Kyser, TK (1987) Tectonic inferences from oxygen isotopes in volcano-plutonic complexes of the India‐Asia Collision Zone, NW India. Tectonics, 6:261–273.CrossRef Srimal N, Basu A., Kyser, TK (1987) Tectonic inferences from oxygen isotopes in volcano-plutonic complexes of the India‐Asia Collision Zone, NW India. Tectonics, 6:261–273.CrossRef
Zurück zum Zitat Vigneresse JL (1995a) Control of granite emplacement by regional deformation. Tectonophysics, 249:173–186.CrossRef Vigneresse JL (1995a) Control of granite emplacement by regional deformation. Tectonophysics, 249:173–186.CrossRef
Zurück zum Zitat Vigneresse JL (1995b) Crustal regime of deformation and ascent of granitic magma. Tectonophysics, 249:187–202.CrossRef Vigneresse JL (1995b) Crustal regime of deformation and ascent of granitic magma. Tectonophysics, 249:187–202.CrossRef
Zurück zum Zitat Wang, J. H., Yin, A., Harrison, T. M., Grove, M., Zhang, Y. Q., & Xie, G. H. (2001). A tectonic model for Cenozoic igneous activities in the eastern Indo–Asian collision zone. Earth and Planetary Science Letters, 188:123–133.CrossRef Wang, J. H., Yin, A., Harrison, T. M., Grove, M., Zhang, Y. Q., & Xie, G. H. (2001). A tectonic model for Cenozoic igneous activities in the eastern Indo–Asian collision zone. Earth and Planetary Science Letters, 188:123–133.CrossRef
Zurück zum Zitat Weinberg, R. F., & Dunlap, W. J. (2000). Growth and deformation of the Ladakh Batholith, Northwest Himalayas: implications for timing of continental collision and origin of calc-alkaline batholiths. The Journal of Geology, 108:303–320.CrossRef Weinberg, R. F., & Dunlap, W. J. (2000). Growth and deformation of the Ladakh Batholith, Northwest Himalayas: implications for timing of continental collision and origin of calc-alkaline batholiths. The Journal of Geology, 108:303–320.CrossRef
Zurück zum Zitat WIKIPEDIA: Batholith; zuletzt abgerufen 20. März 2020 WIKIPEDIA: Batholith; zuletzt abgerufen 20. März 2020
Zurück zum Zitat Blanckenburg Fv, Davies JH (1995) Slab breakoff: a model for syncollisional magmatism and tectonics in the Alps. Tectonics, 14:120–131.CrossRef Blanckenburg Fv, Davies JH (1995) Slab breakoff: a model for syncollisional magmatism and tectonics in the Alps. Tectonics, 14:120–131.CrossRef
Zurück zum Zitat Broderick C, Wotzlaw JF, Frick DA, Gerdes A, Ulianov A, Günther D, Schaltegger U (2015) Linking the thermal evolution and emplacement history of an upper-crustal pluton to its lower-crustal roots using zircon geochronology and geochemistry (southern Adamello batholith, N. Italy). Contributions to Mineralogy and Petrology, 170:28. Broderick C, Wotzlaw JF, Frick DA, Gerdes A, Ulianov A, Günther D, Schaltegger U (2015) Linking the thermal evolution and emplacement history of an upper-crustal pluton to its lower-crustal roots using zircon geochronology and geochemistry (southern Adamello batholith, N. Italy). Contributions to Mineralogy and Petrology, 170:28.
Zurück zum Zitat Martin S, Macera P (2014) Tertiary volcanism in the Italian Alps (Giudicarie fault zone, NE Italy): insight for double alpine magmatic arc. Italian Journal of Geosciences, 133:63–84.CrossRef Martin S, Macera P (2014) Tertiary volcanism in the Italian Alps (Giudicarie fault zone, NE Italy): insight for double alpine magmatic arc. Italian Journal of Geosciences, 133:63–84.CrossRef
Zurück zum Zitat Schaltegger U, Brack P, Ovtcharova M, Peytcheva I, Schoene B et al (2009) Zircon and titanite recording 1.5 million years of magma accretion, crystallization and initial cooling in a composite pluton (southern Adamello batholith, northern Italy). Earth and Planetary Science Letters, 286:208–218.CrossRef Schaltegger U, Brack P, Ovtcharova M, Peytcheva I, Schoene B et al (2009) Zircon and titanite recording 1.5 million years of magma accretion, crystallization and initial cooling in a composite pluton (southern Adamello batholith, northern Italy). Earth and Planetary Science Letters, 286:208–218.CrossRef
Zurück zum Zitat Skopelitis A, Bindeman I, Ulianov A, Gerdes A, Brack P, Schaltegger U (2012) Are there tonalites and tonalites? Disentangling the processes and sources of tonalites from the Adamello Batholith (Italian Alps). EGUGA, 8129. Skopelitis A, Bindeman I, Ulianov A, Gerdes A, Brack P, Schaltegger U (2012) Are there tonalites and tonalites? Disentangling the processes and sources of tonalites from the Adamello Batholith (Italian Alps). EGUGA, 8129.
Zurück zum Zitat Tiepolo M, Tribuzio R., Ji WQ, Wu FY, Lustrino M (2014) Alpine Tethys closure as revealed by amphibole-rich mafic and ultramafic rocks from the Adamello and the Bergell intrusions (Central Alps). Journal of the Geological Society, 171:793–799.CrossRef Tiepolo M, Tribuzio R., Ji WQ, Wu FY, Lustrino M (2014) Alpine Tethys closure as revealed by amphibole-rich mafic and ultramafic rocks from the Adamello and the Bergell intrusions (Central Alps). Journal of the Geological Society, 171:793–799.CrossRef
Zurück zum Zitat Aydin F, Schmitt AK, Siebel W, Sönmez M et al. (2014) Quaternary bimodal volcanism in the Niğde Volcanic Complex (Cappadocia, central Anatolia, Turkey): age, petrogenesis and geodynamic implications. Contributions to Mineralogy and Petrology 168:1078.CrossRef Aydin F, Schmitt AK, Siebel W, Sönmez M et al. (2014) Quaternary bimodal volcanism in the Niğde Volcanic Complex (Cappadocia, central Anatolia, Turkey): age, petrogenesis and geodynamic implications. Contributions to Mineralogy and Petrology 168:1078.CrossRef
Zurück zum Zitat Kamacı Ö, Altunkaynak Ş (2020) The role of accreted continental crust in the formation of granites within the Alpine style continental collision zone: Geochemical and geochronological constrains from leucogranites in the Çataldağ Metamorphic Core Complex (NW Turkey). Lithos 354:105347.CrossRef Kamacı Ö, Altunkaynak Ş (2020) The role of accreted continental crust in the formation of granites within the Alpine style continental collision zone: Geochemical and geochronological constrains from leucogranites in the Çataldağ Metamorphic Core Complex (NW Turkey). Lithos 354:105347.CrossRef
Zurück zum Zitat Keskin M (2007) Eastern Anatolia: a hotspot in a collision zone without a mantle plume. Special Papers-Geological Society of America 430: 693. Keskin M (2007) Eastern Anatolia: a hotspot in a collision zone without a mantle plume. Special Papers-Geological Society of America 430: 693.
Zurück zum Zitat Kheirkhah M, Allen MB, Emami M (2009) Quaternary syn-collision magmatism from the Iran/Turkey borderlands. Journal of Volcanology and Geothermal Research, 182:1–12.CrossRef Kheirkhah M, Allen MB, Emami M (2009) Quaternary syn-collision magmatism from the Iran/Turkey borderlands. Journal of Volcanology and Geothermal Research, 182:1–12.CrossRef
Zurück zum Zitat Kamacı Ö, Altunkaynak Ş (2020) The role of accreted continental crust in the formation of granites within the Alpine style continental collision zone: Geochemical and geochronological constraints from leucogranites in the Çataldağ Metamorphic Core Complex (NW Turkey). Lithos 354:105347.CrossRef Kamacı Ö, Altunkaynak Ş (2020) The role of accreted continental crust in the formation of granites within the Alpine style continental collision zone: Geochemical and geochronological constraints from leucogranites in the Çataldağ Metamorphic Core Complex (NW Turkey). Lithos 354:105347.CrossRef
Zurück zum Zitat Neill I, Meliksetian K, Allen MB, Navarsardyan G, Karapetyan S (2013) Pliocene–Quaternary volcanic rocks of NW Armenia: magmatism and lithospheric dynamics within an active orogenic plateau. Lithos 180:200–215.CrossRef Neill I, Meliksetian K, Allen MB, Navarsardyan G, Karapetyan S (2013) Pliocene–Quaternary volcanic rocks of NW Armenia: magmatism and lithospheric dynamics within an active orogenic plateau. Lithos 180:200–215.CrossRef
Zurück zum Zitat Pearce JA, Bender JF, De Long SE, Kidd WSF et al (1990). Genesis of collision volcanism in Eastern Anatolia, Turkey. Journal of Volcanology and Geothermal Research, 44(1–2):189–229.CrossRef Pearce JA, Bender JF, De Long SE, Kidd WSF et al (1990). Genesis of collision volcanism in Eastern Anatolia, Turkey. Journal of Volcanology and Geothermal Research, 44(1–2):189–229.CrossRef
Zurück zum Zitat Schumacher R, Mues-Schumacher U (1996) The Kizilkaya ignimbrite—an unusual low-aspect-ratio ignimbrite from Cappadocia, central Turkey. Journal of Volcanology and Geothermal Research, 70:107–121. Schumacher R, Mues-Schumacher U (1996) The Kizilkaya ignimbrite—an unusual low-aspect-ratio ignimbrite from Cappadocia, central Turkey. Journal of Volcanology and Geothermal Research, 70:107–121.
Zurück zum Zitat Temel A, Gündoğdu MN, Gourgaud A, Le Pennec, JL (1998) Ignimbrites of Cappadocia (central Anatolia, Turkey): petrology and geochemistry. Journal of Volcanology and Geothermal Research, 85:447–471.CrossRef Temel A, Gündoğdu MN, Gourgaud A, Le Pennec, JL (1998) Ignimbrites of Cappadocia (central Anatolia, Turkey): petrology and geochemistry. Journal of Volcanology and Geothermal Research, 85:447–471.CrossRef
Zurück zum Zitat Hecht L. Vigneresse JL, Morteani G (1997) Constraints on the origin of zonation of the granite complexes in the Fichtelgebirge (Germany and Czech Republic): evidence from a gravity and geochemical study. Geol. Rundsch. 86 Suppl.:93–109. Hecht L. Vigneresse JL, Morteani G (1997) Constraints on the origin of zonation of the granite complexes in the Fichtelgebirge (Germany and Czech Republic): evidence from a gravity and geochemical study. Geol. Rundsch. 86 Suppl.:93–109.
Zurück zum Zitat Siebel W, Trzebski R, Stettner G et al. (1997) Granitoid magmatism of the NW Bohemian massif revealed: gravity data, composition, age relations and phase concept. Geol. Rundsch. 86 Suppl.:45–63. Siebel W, Trzebski R, Stettner G et al. (1997) Granitoid magmatism of the NW Bohemian massif revealed: gravity data, composition, age relations and phase concept. Geol. Rundsch. 86 Suppl.:45–63.
Zurück zum Zitat Trzebski R, Behr HJ, Conrad W (1997) Subsurface distribution and tectonic setting of the late-Variscan granites in the northwestern Bohemian Massif. Geol. Runds h. 86 Supp.:64–78. Trzebski R, Behr HJ, Conrad W (1997) Subsurface distribution and tectonic setting of the late-Variscan granites in the northwestern Bohemian Massif. Geol. Runds h. 86 Supp.:64–78.
Zurück zum Zitat Zulauf G, Maier M, Stöckhert B (1997) Depth of intrusion and thermal modelling of the Falkenberg granite (Oberpfalz, Germany). Geol. Rundsch. 86 Suppl.:87–92. Zulauf G, Maier M, Stöckhert B (1997) Depth of intrusion and thermal modelling of the Falkenberg granite (Oberpfalz, Germany). Geol. Rundsch. 86 Suppl.:87–92.
Zurück zum Zitat Brenchley PJ, Rawson P (Hg)(2006) The Geology of England and Wales. Geological Society Publishing House. Brenchley PJ, Rawson P (Hg)(2006) The Geology of England and Wales. Geological Society Publishing House.
Zurück zum Zitat Chappel B, Hine R (2008) The Cornubian Batholith: an example of Magmatic Fractionation on a Crustal Scale. Resource Geology 56:203–244.CrossRef Chappel B, Hine R (2008) The Cornubian Batholith: an example of Magmatic Fractionation on a Crustal Scale. Resource Geology 56:203–244.CrossRef
Zurück zum Zitat Cosgrove ME, Elliott MH (1976) Suprabatholithic volcanism of the southwest England granites. Proc. Ussher Soc. 3 (3):391–401. Cosgrove ME, Elliott MH (1976) Suprabatholithic volcanism of the southwest England granites. Proc. Ussher Soc. 3 (3):391–401.
Zurück zum Zitat Pownall JM, Waters DJ, Searle MP et al. (2012) Shallow laccolithic emplacement of the Land‘s End and Tregonning granites, Cornwall, UK: Evidence from aureole field relations and P-T modeling of cordierite-anthophyllite hornfels. Geospehre 8:1467–1504.CrossRef Pownall JM, Waters DJ, Searle MP et al. (2012) Shallow laccolithic emplacement of the Land‘s End and Tregonning granites, Cornwall, UK: Evidence from aureole field relations and P-T modeling of cordierite-anthophyllite hornfels. Geospehre 8:1467–1504.CrossRef
Zurück zum Zitat Stone M (1992) The Tregonning granite: petrogenesis of Li-mica granites in the Cornubian batholith. Mineralogical Magazine 56:141–155.CrossRef Stone M (1992) The Tregonning granite: petrogenesis of Li-mica granites in the Cornubian batholith. Mineralogical Magazine 56:141–155.CrossRef
Zurück zum Zitat Casini L, Cuccuru S et al. (2015): Evolution of the Corsica-Sardinia Batholith and late-orogenic shearing of the Variscides. Tectonophysica 646:65–78.CrossRef Casini L, Cuccuru S et al. (2015): Evolution of the Corsica-Sardinia Batholith and late-orogenic shearing of the Variscides. Tectonophysica 646:65–78.CrossRef
Zurück zum Zitat Casini L, Cuccur S, Maino M, Oggioano G, Tiepolo M (2012) Emplacement of the Arzachena Pluton (Corsica-Sardinia Batholith) and the geodynamics of incoming Pangea. Tectonophysics 544–545:31–49.CrossRef Casini L, Cuccur S, Maino M, Oggioano G, Tiepolo M (2012) Emplacement of the Arzachena Pluton (Corsica-Sardinia Batholith) and the geodynamics of incoming Pangea. Tectonophysics 544–545:31–49.CrossRef
Zurück zum Zitat Cortesogno L, Cassinis G, Dallagiovanna L et al. (1998) The Varican post-collisional volcanism in Late Carboniferous-Permian Sequences of Ligurian Alps, Southern Alps and Sardinia (Italy): a synhesis. Lithos 45:305–328.CrossRef Cortesogno L, Cassinis G, Dallagiovanna L et al. (1998) The Varican post-collisional volcanism in Late Carboniferous-Permian Sequences of Ligurian Alps, Southern Alps and Sardinia (Italy): a synhesis. Lithos 45:305–328.CrossRef
Zurück zum Zitat Paquette JL, Ménot RP, Pin C, Orsini JB. (2003) Episodic and short-lived granitic pulses in a post-collisional setting: evidence from precise U–Pb zircon dating through a crustal cross-section in Corsica. Chemical geology, 198(1–2):1–20.CrossRef Paquette JL, Ménot RP, Pin C, Orsini JB. (2003) Episodic and short-lived granitic pulses in a post-collisional setting: evidence from precise U–Pb zircon dating through a crustal cross-section in Corsica. Chemical geology, 198(1–2):1–20.CrossRef
Zurück zum Zitat Rossi P (1991): Genesis of a Variscan batholith: Field, petrological and mineralogical evidence from the Corisca-Sardinia batholith. Tectonophysics 195:319–346.CrossRef Rossi P (1991): Genesis of a Variscan batholith: Field, petrological and mineralogical evidence from the Corisca-Sardinia batholith. Tectonophysics 195:319–346.CrossRef
Zurück zum Zitat Rossi P, Cocherie A, Fanning CM (2015) Evidence in Variscan Corsica of brief and voluminous Late Carboniferous to Early Permian volcanic-plutonic event contemporaneous with a higher-temperature/low-pressure metamorphic peak in the lower crust. Bulletin de la Société Géologique de France 186:171–192.CrossRef Rossi P, Cocherie A, Fanning CM (2015) Evidence in Variscan Corsica of brief and voluminous Late Carboniferous to Early Permian volcanic-plutonic event contemporaneous with a higher-temperature/low-pressure metamorphic peak in the lower crust. Bulletin de la Société Géologique de France 186:171–192.CrossRef
Zurück zum Zitat Atherton MP (1990) The Coastal Batholith of Peru: The product of rapid recycling of „new“ crust formed within rifted continental margin. Geol. Journ, 25:337–349.CrossRef Atherton MP (1990) The Coastal Batholith of Peru: The product of rapid recycling of „new“ crust formed within rifted continental margin. Geol. Journ, 25:337–349.CrossRef
Zurück zum Zitat Cobbing EJ, Pitcher WS (1983) Andean plutonism in Peru and its relationship to volcanism and metallogenesis at a segmented plate edge. Geological Society of America Memoir 159:277–291.CrossRef Cobbing EJ, Pitcher WS (1983) Andean plutonism in Peru and its relationship to volcanism and metallogenesis at a segmented plate edge. Geological Society of America Memoir 159:277–291.CrossRef
Zurück zum Zitat Haederle M, Atherton MP (2002) Shape and intrusion style of the Coastal Batholith, Peru. Tectonophysics 345:17–28.CrossRef Haederle M, Atherton MP (2002) Shape and intrusion style of the Coastal Batholith, Peru. Tectonophysics 345:17–28.CrossRef
Zurück zum Zitat Magririer A, Audin L, Robert X et al. (2016) Time and mode of exhumation of the Cordillera Blanca batholith (Peruvian Andes). Journ. Geophys. Res. Solid Earth 121:6235–6249.CrossRef Magririer A, Audin L, Robert X et al. (2016) Time and mode of exhumation of the Cordillera Blanca batholith (Peruvian Andes). Journ. Geophys. Res. Solid Earth 121:6235–6249.CrossRef
Zurück zum Zitat Myers JS (1975) Cauldron subsidence and fluidization: mechanisms of intrusion of the Coastal Batholith of Peru into its own volcanic ejecta. GSA Bulletin 86: 1209–1220.CrossRef Myers JS (1975) Cauldron subsidence and fluidization: mechanisms of intrusion of the Coastal Batholith of Peru into its own volcanic ejecta. GSA Bulletin 86: 1209–1220.CrossRef
Zurück zum Zitat Petford N, Atherton MP (1996) Na-rich partial melts from newly underpaltes basaltic crust: the Cordillera Blanca Batholith, Peru. Journ. Petrol. 37:1491–1521.CrossRef Petford N, Atherton MP (1996) Na-rich partial melts from newly underpaltes basaltic crust: the Cordillera Blanca Batholith, Peru. Journ. Petrol. 37:1491–1521.CrossRef
Zurück zum Zitat Russel MA, Pitcher WS, Wilson PA (1976) Ring complexes of the Peruvian Coastal Batholith: a long-standing subvolcanic regime. Canadian Journ. Earth Sciences 13:1020–1030.CrossRef Russel MA, Pitcher WS, Wilson PA (1976) Ring complexes of the Peruvian Coastal Batholith: a long-standing subvolcanic regime. Canadian Journ. Earth Sciences 13:1020–1030.CrossRef
Zurück zum Zitat Thorpe RS, Francis PW (2012/1979) Petrogenetic relationships of volcanic and intrusive rocks of the Andes. In: Origin of Granite Batholith, Geochemical evidence, ed. Atherton MP, Tarney J.:65–75. Springer, Heidelberg. Thorpe RS, Francis PW (2012/1979) Petrogenetic relationships of volcanic and intrusive rocks of the Andes. In: Origin of Granite Batholith, Geochemical evidence, ed. Atherton MP, Tarney J.:65–75. Springer, Heidelberg.
Zurück zum Zitat Calanchi N, De Rosa R, Mazzuoli R et al. (1993) Silicic magma entering a basaltic magma chamber: eruptive dynamics and magma mixing – an example from Salina (Aeolian islands, Southern Tyrrhenian Sea). Bull. Volcan. 55:504–522.CrossRef Calanchi N, De Rosa R, Mazzuoli R et al. (1993) Silicic magma entering a basaltic magma chamber: eruptive dynamics and magma mixing – an example from Salina (Aeolian islands, Southern Tyrrhenian Sea). Bull. Volcan. 55:504–522.CrossRef
Zurück zum Zitat Renzulli A, Serri G, Santi P, Mattioli M, Holm PM (2017) Origin of high-silica liquids at Stromboli volcano (Aeolian Islands, Italy) inferred from crustal xenoliths. Bull. Volcan. 62:400–419.CrossRef Renzulli A, Serri G, Santi P, Mattioli M, Holm PM (2017) Origin of high-silica liquids at Stromboli volcano (Aeolian Islands, Italy) inferred from crustal xenoliths. Bull. Volcan. 62:400–419.CrossRef
Zurück zum Zitat Clemens-Knott D, Saleeny JB (1999) Impinging ring dike complexes in the Sierra Nevada batholith, California: Roots of the Early Cretacaeous volcanic arc. GSA Bulletin 114:484–496.CrossRef Clemens-Knott D, Saleeny JB (1999) Impinging ring dike complexes in the Sierra Nevada batholith, California: Roots of the Early Cretacaeous volcanic arc. GSA Bulletin 114:484–496.CrossRef
Zurück zum Zitat Bateman PC, Clark LD et al. (1963): The Sierra Nevada Batholith: A synthesis of recent work across the Central Part. Geological Survey Professional Paper 414-D. Washington: US Gov. Printing Office. iv + 46. Bateman PC, Clark LD et al. (1963): The Sierra Nevada Batholith: A synthesis of recent work across the Central Part. Geological Survey Professional Paper 414-D. Washington: US Gov. Printing Office. iv + 46.
Zurück zum Zitat Bateman PC, Eaton JP (1967): Sierra Nevada Batholith. Science 158:1407–1417.CrossRef Bateman PC, Eaton JP (1967): Sierra Nevada Batholith. Science 158:1407–1417.CrossRef
Zurück zum Zitat Cecil MR, Rotberg GL et al. (2012): Magmatic growth and batholitic root development in the northern Sierra Nevada, Californa. Geospehre 8:592–606.CrossRef Cecil MR, Rotberg GL et al. (2012): Magmatic growth and batholitic root development in the northern Sierra Nevada, Californa. Geospehre 8:592–606.CrossRef
Metadaten
Titel
Pluton und Batholith
verfasst von
Gottfried Hofbauer
Copyright-Jahr
2021
Verlag
Springer Berlin Heidelberg
DOI
https://doi.org/10.1007/978-3-662-62724-2_17