International audienceThe combination of U–Pb, Lu–Hf and O isotopic analyses in global zircon databases has recently been used to constrain continental crustal growth and evolution. To identify crust-forming events, these studies rely on the assumption that new crust is formed from depleted mantle sources. In contrast, this work suggests that post-collisional mafic magmas and their derivatives represent a non-negligible contribution to crustal growth, despite having zircons with “crust-like” Hf–O isotopic characteristics. We address this paradox and its implications for crustal evolution on the basis of a case study from the Variscan French Massif Central (FMC). The late stages of continental collisions are systematically marked by the empl...
International audienceEarth's continental crust is dominantly made of buoyant, felsic igneous materi...
International audienceEarth's continental crust is dominantly made of buoyant, felsic igneous materi...
International audienceEarth's continental crust is dominantly made of buoyant, felsic igneous materi...
International audienceThe combination of U–Pb, Lu–Hf and O isotopic analyses in global zircon databa...
International audienceThe combination of U–Pb, Lu–Hf and O isotopic analyses in global zircon databa...
International audienceThe combination of U–Pb, Lu–Hf and O isotopic analyses in global zircon databa...
International audienceThe combination of U–Pb, Lu–Hf and O isotopic analyses in global zircon databa...
International audienceThe combination of U–Pb, Lu–Hf and O isotopic analyses in global zircon databa...
International audienceThe combination of U–Pb, Lu–Hf and O isotopic analyses in global zircon databa...
International audienceThe combination of U–Pb, Lu–Hf and O isotopic analyses in global zircon databa...
International audienceThe processes that control crustal growth by addition of new mantle-derived ma...
International audienceThe processes that control crustal growth by addition of new mantle-derived ma...
International audienceEarth's continental crust is dominantly made of buoyant, felsic igneous materi...
International audienceEarth's continental crust is dominantly made of buoyant, felsic igneous materi...
International audienceEarth's continental crust is dominantly made of buoyant, felsic igneous materi...
International audienceEarth's continental crust is dominantly made of buoyant, felsic igneous materi...
International audienceEarth's continental crust is dominantly made of buoyant, felsic igneous materi...
International audienceEarth's continental crust is dominantly made of buoyant, felsic igneous materi...
International audienceThe combination of U–Pb, Lu–Hf and O isotopic analyses in global zircon databa...
International audienceThe combination of U–Pb, Lu–Hf and O isotopic analyses in global zircon databa...
International audienceThe combination of U–Pb, Lu–Hf and O isotopic analyses in global zircon databa...
International audienceThe combination of U–Pb, Lu–Hf and O isotopic analyses in global zircon databa...
International audienceThe combination of U–Pb, Lu–Hf and O isotopic analyses in global zircon databa...
International audienceThe combination of U–Pb, Lu–Hf and O isotopic analyses in global zircon databa...
International audienceThe combination of U–Pb, Lu–Hf and O isotopic analyses in global zircon databa...
International audienceThe processes that control crustal growth by addition of new mantle-derived ma...
International audienceThe processes that control crustal growth by addition of new mantle-derived ma...
International audienceEarth's continental crust is dominantly made of buoyant, felsic igneous materi...
International audienceEarth's continental crust is dominantly made of buoyant, felsic igneous materi...
International audienceEarth's continental crust is dominantly made of buoyant, felsic igneous materi...
International audienceEarth's continental crust is dominantly made of buoyant, felsic igneous materi...
International audienceEarth's continental crust is dominantly made of buoyant, felsic igneous materi...
International audienceEarth's continental crust is dominantly made of buoyant, felsic igneous materi...