Surface exposures as well as deep-crustal and upper-mantle xenoliths constrain the composition of the lithospheric column beneath the Sierra Nevada mountain range (California) as it resulted from the generation of the Mesozoic Sierra Nevada batholith (SNB). After the cessation of magmatism at ∼80 Ma, the SNB consisted of a ∼30 to 35 km thick granitic crust underlain by a batholithic “root,” a ∼70 km thick sequence of mafic-ultramafic, mainly eclogite-facies cumulate and residues. The deeper root assemblages consist largely of garnet and pyroxenes that precipitated as igneous cumulate phases during the SNB magmatism. The root assemblages were present beneath the SNB as recently as ∼8 to 12 Ma, when they were sampled as xenoliths in fast-asce...
Eclogites are commonly believed to be highly susceptible to delamination and sinking into the mantle...
Seismic data provide images of crust–mantle interactions during ongoing removal of the dense batholi...
Eclogites are commonly believed to be highly susceptible to delamination and sinking into the mantle...
Surface exposures as well as deep-crustal and upper-mantle xenoliths constrain the composition of th...
Surface exposures as well as deep-crustal and upper-mantle xenoliths constrain the composition of t...
Surface exposures as well as deep-crustal and upper-mantle xenoliths constrain the composition of t...
We present evidence for a thick (∼100 km) sequence of cogenetic rocks which make up the root of the ...
We present evidence for a thick (∼100 km) sequence of cogenetic rocks which make up the root of the ...
Experimental studies show that when hydrous mafic to intermediate composition assemblages are melted...
Garnet pyroxenites are the most common deep-crustal and upper-mantle xenolith assemblages found in ...
In contrast to the much-studied central and southern Sierra Nevada, relatively little is known about...
In contrast to the much-studied central and southern Sierra Nevada, relatively little is known about...
Lower crustal and upper mantle xenoliths from the Sierra Nevada continental arc in California, USA r...
The Tehachapi complex lies at the southern end of the Sierra Nevada batholith adjacent to the Neogen...
The Tehachapi complex lies at the southern end of the Sierra Nevada batholith adjacent to the Neogen...
Eclogites are commonly believed to be highly susceptible to delamination and sinking into the mantle...
Seismic data provide images of crust–mantle interactions during ongoing removal of the dense batholi...
Eclogites are commonly believed to be highly susceptible to delamination and sinking into the mantle...
Surface exposures as well as deep-crustal and upper-mantle xenoliths constrain the composition of th...
Surface exposures as well as deep-crustal and upper-mantle xenoliths constrain the composition of t...
Surface exposures as well as deep-crustal and upper-mantle xenoliths constrain the composition of t...
We present evidence for a thick (∼100 km) sequence of cogenetic rocks which make up the root of the ...
We present evidence for a thick (∼100 km) sequence of cogenetic rocks which make up the root of the ...
Experimental studies show that when hydrous mafic to intermediate composition assemblages are melted...
Garnet pyroxenites are the most common deep-crustal and upper-mantle xenolith assemblages found in ...
In contrast to the much-studied central and southern Sierra Nevada, relatively little is known about...
In contrast to the much-studied central and southern Sierra Nevada, relatively little is known about...
Lower crustal and upper mantle xenoliths from the Sierra Nevada continental arc in California, USA r...
The Tehachapi complex lies at the southern end of the Sierra Nevada batholith adjacent to the Neogen...
The Tehachapi complex lies at the southern end of the Sierra Nevada batholith adjacent to the Neogen...
Eclogites are commonly believed to be highly susceptible to delamination and sinking into the mantle...
Seismic data provide images of crust–mantle interactions during ongoing removal of the dense batholi...
Eclogites are commonly believed to be highly susceptible to delamination and sinking into the mantle...