Mid-Cenozoic succession on the northeast limb of the Mount Diablo anticline, California—A stratigraphic record of tectonic events in the forearc basin

Author:

Sullivan Raymond1,Sullivan Morgan D.2,Edwards Stephen W.3,Sarna-Wojcicki Andrei M.4,Hackworth Rebecca A.2,Deino Alan L.5

Affiliation:

1. Department of Earth and Climate Science, San Francisco State University, San Francisco, California 94132, USA

2. Chevron Technology Company,1500 Louisiana Street, Houston, Texas 77002, USA

3. Regional Parks Botanic Garden, Tilden Regional Park, Berkeley, California 94708, USA

4. U.S. Geological Survey (Emeritus), 345 Middlefield Road, Menlo Park, California 94025, USA

5. Berkeley Geochronology Center, 2455 Ridge Road, Berkeley, California 94709, USA

Abstract

ABSTRACT The mid-Cenozoic succession in the northeast limb of the Mount Diablo anticline records the evolution of plate interactions at the leading edge of the North America plate. Subduction of the Kula plate and later Farallon plate beneath the North America plate created a marine forearc basin that existed from late Mesozoic to mid-Cenozoic times. In the early Cenozoic, extension on north-south faults formed a graben depocenter on the west side of the basin. Deposition of the Markley Formation of middle to late? Eocene age took place in the late stages of the marine forearc basin. In the Oligocene, the marine forearc basin changed to a primarily nonmarine basin, and the depocenter of the basin shifted eastward of the Midland fault to a south-central location for the remainder of the Cenozoic. The causes of these changes may have included slowing in the rate of subduction, resulting in slowing subsidence, and they might also have been related to the initiation of transform motion far to the south. Two unconformities in the mid-Cenozoic succession record the changing events on the plate boundary. The first hiatus is between the Markley Formation and the overlying Kirker Formation of Oligocene age. The succession above the unconformity records the widespread appearance of nonmarine rocks and the first abundant appearance of silicic volcanic detritus due to slab rollback, which reversed the northeastward migration of the volcanic arc to a more proximal location. A second regional unconformity separates the Kirker/Valley Springs formations from the overlying Cierbo/Mehrten formations of late Miocene age. This late Miocene unconformity may reflect readjustment of stresses in the North America plate that occurred when subduction was replaced by transform motion at the plate boundary. The Cierbo and Neroly formations above the unconformity contain abundant andesitic detritus due to proto-Cascade volcanism. In the late Cenozoic, the northward-migrating triple junction produced volcanic eruptive centers in the Coast Ranges. Tephra from these local sources produced time markers in the late Cenozoic succession.

Publisher

Geological Society of America

Reference100 articles.

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Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Upper plate deformation during blueschist exhumation, ancestral western California forearc basin, from stratigraphic and structural relationships at Mount Diablo and in the Rio Vista Basin;Regional Geology of Mount Diablo, California: Its Tectonic Evolution on the North America Plate Boundary;2021-09-27

2. History of geological investigations of Mount Diablo, Contra Costa County, California;Regional Geology of Mount Diablo, California: Its Tectonic Evolution on the North America Plate Boundary;2021-09-27

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