The primordial differentiation of the Moon via a global magma ocean has become the paradigm under which all lunar data are interpreted. The success of this model in explaining multiple geochemical, petrologic, and isotopic characteristics lunar geology has led to magma oceans becoming the preferred model for the differentiation of Earth, Mars, Mercury, Vesta, and other large terrestrial bodies. The goal of this work is to combine petrologic analyses of lunar samples with high pressure, high temperature petrologic experiments to place new and detailed constraints the petrogenetic processes that operated during different stages of lunar magmatism, the processes that have acted upon these magmas to obscure their relationship to their mantle so...
The Moon is the only planetary body, besides Earth, from which there are samples from known location...
It is generally considered that the outer portion of the Moon was molten in its early history. Antar...
Crystallization experiments under highly reducing conditions of synthetic material of mean Apollo 11...
The primordial differentiation of the Moon via a global magma ocean has become the paradigm under wh...
Despite some 50 years of intense research on samples returned from the Apollo missions and lunar met...
Corresponding author. E-mail address: cshearer@unm.edu (C.K. Shearer).early mantle dynamics and melt...
Recent studies, some of them using data from the Apollo seismic network from the 1960's and 1970's, ...
The Earth and the Moon are observed to be almost indistinguishable over a range of refractory isotop...
While on Earth the processes of early differentiation and crust formation have been largely overprin...
An understanding of the petrogenesis of lunar magmas, particularly mare basalts and the parent magma...
Phase equilibrium experiments at both high and low pressures on lunar samples and synthetic composit...
Despite more than 40 years of studying Apollo samples, the age and early evolution of the Moon remai...
Despite more than 40 years of studying Apollo samples, the age and early evolution of the Moon remai...
The heterogeneous-source model of mare basalt formation indicates that Lunar Magma Ocean (LMO) overt...
The Moon is the only planetary body, besides Earth, from which there are samples from known location...
The Moon is the only planetary body, besides Earth, from which there are samples from known location...
It is generally considered that the outer portion of the Moon was molten in its early history. Antar...
Crystallization experiments under highly reducing conditions of synthetic material of mean Apollo 11...
The primordial differentiation of the Moon via a global magma ocean has become the paradigm under wh...
Despite some 50 years of intense research on samples returned from the Apollo missions and lunar met...
Corresponding author. E-mail address: cshearer@unm.edu (C.K. Shearer).early mantle dynamics and melt...
Recent studies, some of them using data from the Apollo seismic network from the 1960's and 1970's, ...
The Earth and the Moon are observed to be almost indistinguishable over a range of refractory isotop...
While on Earth the processes of early differentiation and crust formation have been largely overprin...
An understanding of the petrogenesis of lunar magmas, particularly mare basalts and the parent magma...
Phase equilibrium experiments at both high and low pressures on lunar samples and synthetic composit...
Despite more than 40 years of studying Apollo samples, the age and early evolution of the Moon remai...
Despite more than 40 years of studying Apollo samples, the age and early evolution of the Moon remai...
The heterogeneous-source model of mare basalt formation indicates that Lunar Magma Ocean (LMO) overt...
The Moon is the only planetary body, besides Earth, from which there are samples from known location...
The Moon is the only planetary body, besides Earth, from which there are samples from known location...
It is generally considered that the outer portion of the Moon was molten in its early history. Antar...
Crystallization experiments under highly reducing conditions of synthetic material of mean Apollo 11...