Paleozoic paleomagnetism and northward drift of the Alexander Terrane, southeastern Alaska
- 10 October 1980
- journal article
- Published by American Geophysical Union (AGU) in Journal of Geophysical Research
- Vol. 85 (B10) , 5281-5296
- https://doi.org/10.1029/jb085ib10p05281
Abstract
Paleozoic limestone, graywacke, sandstone, milestone, red beds and volcanic rocks of the Alexander terrane, southeastern Alaska, have yielded six paleomagnetic pole positions after thermal and alternating‐field demagnetization. These poles are from sample groups of late Middle Ordovician, Late Ordovician, Devonian, Late Devonian, and early and late Carboniferous age. To test various tectonic models for the structural development of this part of western North America, the paleomagnetic results are compared to those for the North American craton. It is found that the observed inclination and declination values deviate significantly from the values predicted for the present‐day position of the Alexander terrane (55.5N, 133.5W). Better matching can be obtained for a paleoposition of the terrane at about 40N, 120W, in the present position of western Nevada and northeastern California. In addition, an in situ 25° clockwise rotation of the terrane is required to restore it to its original position.Keywords
This publication has 30 references indexed in Scilit:
- Paleomagnetic poles and polarity zonation from Cambrian and Devonian strata of ArizonaPublished by Elsevier ,2002
- Paleomagnetism of the Triassic Nikolai Greenstone, McCarthy Quadrangle, AlaskaCanadian Journal of Earth Sciences, 1977
- Wrangellia—A displaced terrane in northwestern North AmericaCanadian Journal of Earth Sciences, 1977
- Discordant paleomagnetic pole positions as evidence of regional shear in the western Cordillera of North AmericaAmerican Journal of Science, 1976
- A paleomagnetic polarity transition in the devonian columbus limestone of Ohio: A possible stratigraphic toolTectonophysics, 1975
- Apparent polar wandering for the Atlantic-bordering continents: Late Carboniferous to EoceneEarth-Science Reviews, 1974
- Evolution of the Canadian Cordillera; a plate-tectonic modelAmerican Journal of Science, 1972
- Distribution of Fusulinaceans in the Western Canadian CordilleraCanadian Journal of Earth Sciences, 1971
- Ultramafics and Orogeny, with Models of the US Cordillera and the TethysNature, 1970
- Dispersion on a SphereProceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences, 1953