[1] We present a new quantitative framework to understand the process of mantle melting based on the velocity structure of igneous crust. Our approach focuses on the lower crustal section, which is expected to be least affected by porosity and seawater alteration, especially for thick igneous crust. Our methodology is thus best for constraining the origin of large igneous provinces. First, a quantitative relation between bulk crustal velocity and mantle melting parameters is established on the basis of data from mantle melting experiments. Second, we show how lower crustal velocity can be used to place bounds on the expected range of bulk crustal velocity, despite ambiguity in crustal emplacement processes. By modeling fractional crystalliz...
U-series studies in oceanic basalts are critical for understanding melting and melt extraction in th...
We develop a two dimensional model that simulates the response of the crust to prolonged mantle-deri...
We present a new quantitative model of granitic (in a broad sense) melt generation and segregation w...
International audienceWe use regional scale numerical models of mantle convection to investigate the...
International audienceWe use regional scale numerical models of mantle convection to investigate the...
The cause of the magmatism on 'volcanic' continental margins is still disputed, specifically as to w...
The cause of the magmatism on 'volcanic' continental margins is still disputed, specifically as to w...
Submitted in partial fulfillment of the requirements for the degree of Doctor of Philosophy at the M...
Rifting is the process that leads to the formation of oceans. Rifting is the break up of continents,...
This chapter presents a synthesis of partial melting in Earth’s continental crust. However, rather t...
International audienceU-series studies in oceanic basalts are critical for understanding melting and...
International audienceU-series studies in oceanic basalts are critical for understanding melting and...
The dynamics and melt sources for crustal growth at active continental margins are analyzed by using...
Generation and migration of granitoid melts are processes that play a fundamental role in the format...
Melt extraction from the partially molten mantle is among the fundamental processes shaping the soli...
U-series studies in oceanic basalts are critical for understanding melting and melt extraction in th...
We develop a two dimensional model that simulates the response of the crust to prolonged mantle-deri...
We present a new quantitative model of granitic (in a broad sense) melt generation and segregation w...
International audienceWe use regional scale numerical models of mantle convection to investigate the...
International audienceWe use regional scale numerical models of mantle convection to investigate the...
The cause of the magmatism on 'volcanic' continental margins is still disputed, specifically as to w...
The cause of the magmatism on 'volcanic' continental margins is still disputed, specifically as to w...
Submitted in partial fulfillment of the requirements for the degree of Doctor of Philosophy at the M...
Rifting is the process that leads to the formation of oceans. Rifting is the break up of continents,...
This chapter presents a synthesis of partial melting in Earth’s continental crust. However, rather t...
International audienceU-series studies in oceanic basalts are critical for understanding melting and...
International audienceU-series studies in oceanic basalts are critical for understanding melting and...
The dynamics and melt sources for crustal growth at active continental margins are analyzed by using...
Generation and migration of granitoid melts are processes that play a fundamental role in the format...
Melt extraction from the partially molten mantle is among the fundamental processes shaping the soli...
U-series studies in oceanic basalts are critical for understanding melting and melt extraction in th...
We develop a two dimensional model that simulates the response of the crust to prolonged mantle-deri...
We present a new quantitative model of granitic (in a broad sense) melt generation and segregation w...