The main objective of this study was to determine whether or not the Southern Sierra Nevada Mountain Range is supported by a crustal root. A secondary goal was to evaluate the relationship between the Sierra Nevada Range and the adjoining Death Valley extensional province. As part of the project, two seismic profiles were executed. The first was a north-south profile running from Ridgecrest to Chafant Valley. The second was an east-west profile from Death Valley to Coalinga. An NPE shot was recorded on the east-west receiver line, and the data were analyzed by forward modeling with a staggered-grid finite-difference code. Concurrently, the authors initiated an in-depth study of lower crustal and upper mantle xenoliths hosted by Neogene volc...
The Southern Sierra Nevada mountain range rapidly uplifted at ≈ 3.5 Ma simultaneously with a pulse o...
Surface exposures as well as deep-crustal and upper-mantle xenoliths constrain the composition of th...
We investigate the putative Pliocene–Quaternary removal of mantle lithosphere from beneath the south...
Geological studies of mantle xenoliths entrained in late Neogene–Quaternary lavas from the southern ...
The putative Pliocene–Quaternary removal of mantle lithosphere from beneath the southern Sierra Neva...
International audienceThe putative Pliocene–Quaternary removal of mantle lithosphere from beneath th...
Traveltime data from the 1993 Southern Sierra Nevada Continental Dynamics seismic refraction experim...
Xenoliths hosted by Cenozoic volcanic flows and plugs from the Central Sierra Nevada and Eastern Sie...
Active and passive seismic experiments show that the southern Sierra, despite standing 1.8 to 2.8 ki...
The general crustal structure of the southern Sierra Nevada and surrounding area was examined throug...
Online access for this thesis was created in part with support from the Institute of Museum and Libr...
A synthesis of geophysical and geological data suggests that the eclogitic (arclogite) mantle lithos...
The southern Sierra Nevada offers an oblique section through young Cordilleran-type batholith genera...
The Sierra Nevada batholith (SNB) is a predominantly NNW-trending feature with distinct transverse z...
International audienceWe investigate the putative Pliocene–Quaternary removal of mantle lithosphere ...
The Southern Sierra Nevada mountain range rapidly uplifted at ≈ 3.5 Ma simultaneously with a pulse o...
Surface exposures as well as deep-crustal and upper-mantle xenoliths constrain the composition of th...
We investigate the putative Pliocene–Quaternary removal of mantle lithosphere from beneath the south...
Geological studies of mantle xenoliths entrained in late Neogene–Quaternary lavas from the southern ...
The putative Pliocene–Quaternary removal of mantle lithosphere from beneath the southern Sierra Neva...
International audienceThe putative Pliocene–Quaternary removal of mantle lithosphere from beneath th...
Traveltime data from the 1993 Southern Sierra Nevada Continental Dynamics seismic refraction experim...
Xenoliths hosted by Cenozoic volcanic flows and plugs from the Central Sierra Nevada and Eastern Sie...
Active and passive seismic experiments show that the southern Sierra, despite standing 1.8 to 2.8 ki...
The general crustal structure of the southern Sierra Nevada and surrounding area was examined throug...
Online access for this thesis was created in part with support from the Institute of Museum and Libr...
A synthesis of geophysical and geological data suggests that the eclogitic (arclogite) mantle lithos...
The southern Sierra Nevada offers an oblique section through young Cordilleran-type batholith genera...
The Sierra Nevada batholith (SNB) is a predominantly NNW-trending feature with distinct transverse z...
International audienceWe investigate the putative Pliocene–Quaternary removal of mantle lithosphere ...
The Southern Sierra Nevada mountain range rapidly uplifted at ≈ 3.5 Ma simultaneously with a pulse o...
Surface exposures as well as deep-crustal and upper-mantle xenoliths constrain the composition of th...
We investigate the putative Pliocene–Quaternary removal of mantle lithosphere from beneath the south...