Tectonics of the Ninetyeast Ridge derived from spreading records in adjacent oceanic basins and age constraints of the ridge

Analysis of new and existing geophysical data for the Central Indian and Wharton Basins of the Indian Ocean were used to understand the formation and evolution of the Ninetyeast Ridge (NER), especially its relationship to the Kerguelen hot spot and the Wharton spreading ridge. Satellite gravity data...

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Main Authors: Krishna, K.S., Abraham, H., Sager, W.W., Pringle, M.S., Frey, F., Rao, D.G., Levchenko, O.V.
Format: Article in Journal/Newspaper
Language:English
Published: American Geophysical Union 2012
Subjects:
Ner
Online Access:http://drs.nio.org/drs/handle/2264/4058
id ftnio:oai:dsr.nio.org:2264/4058
record_format openpolar
spelling ftnio:oai:dsr.nio.org:2264/4058 2023-05-15T13:47:56+02:00 Tectonics of the Ninetyeast Ridge derived from spreading records in adjacent oceanic basins and age constraints of the ridge Krishna, K.S. Abraham, H. Sager, W.W. Pringle, M.S. Frey, F. Rao, D.G. Levchenko, O.V. 2012 http://drs.nio.org/drs/handle/2264/4058 en eng American Geophysical Union JGR_117_1.jpg An edited version of this paper was published by AGU. Copyright [2012] AGU. To view the published open abstract, go to http://dx.doi.org/10.1029/2011JB008805 ocean basins tectonics spreading centres Journal Article 2012 ftnio 2013-04-12T23:16:00Z Analysis of new and existing geophysical data for the Central Indian and Wharton Basins of the Indian Ocean were used to understand the formation and evolution of the Ninetyeast Ridge (NER), especially its relationship to the Kerguelen hot spot and the Wharton spreading ridge. Satellite gravity data and magnetic anomalies 34 through 19 define crustal isochrons and show fracture zones striking approx. N5 degrees E. One of these, at 89 degrees E, crosses the approx. N10 degrees E trending NER, impacting the NER morphology. From 77 to 43 Ma the NER lengthened at a rate of approx. 118 km/Myr, twice that of the approx. 48–58 km/Myr accretion rate of adjacent oceanic crust. This difference can be explained by southward jumps of the Wharton spreading ridge toward the hot spot, which transferred portions of crust from the Antarctic plate to the Indian plate, lengthening the NER. Magnetic anomalies document a small number of large spreading ridge jumps in the ocean crust immediately to the west of the NER, especially two leaving observable 65 and 42 Ma fossil spreading ridges. In contrast, complex magnetic anomaly progressions and morphology imply that smaller spreading ridge jumps occurred at more frequent intervals beneath the NER. Comparison of the NER dates and magnetic anomaly ages implies that the hot spot first emplaced NER volcanoes on the Indian plate at a distance from the Wharton Ridge, but as the northward drifting spreading ridge approached the hot spot, the two interacted, keeping later NER volcanism near the spreading ridge crest by spreading center jumps. Article in Journal/Newspaper Antarc* Antarctic National Institute of Oceanography, India: Digital Repository Service (DRS@nio) Antarctic Indian Kerguelen Ner ENVELOPE(6.622,6.622,62.612,62.612) The Antarctic Wharton ENVELOPE(157.817,157.817,-81.050,-81.050)
institution Open Polar
collection National Institute of Oceanography, India: Digital Repository Service (DRS@nio)
op_collection_id ftnio
language English
topic ocean basins
tectonics
spreading centres
spellingShingle ocean basins
tectonics
spreading centres
Krishna, K.S.
Abraham, H.
Sager, W.W.
Pringle, M.S.
Frey, F.
Rao, D.G.
Levchenko, O.V.
Tectonics of the Ninetyeast Ridge derived from spreading records in adjacent oceanic basins and age constraints of the ridge
topic_facet ocean basins
tectonics
spreading centres
description Analysis of new and existing geophysical data for the Central Indian and Wharton Basins of the Indian Ocean were used to understand the formation and evolution of the Ninetyeast Ridge (NER), especially its relationship to the Kerguelen hot spot and the Wharton spreading ridge. Satellite gravity data and magnetic anomalies 34 through 19 define crustal isochrons and show fracture zones striking approx. N5 degrees E. One of these, at 89 degrees E, crosses the approx. N10 degrees E trending NER, impacting the NER morphology. From 77 to 43 Ma the NER lengthened at a rate of approx. 118 km/Myr, twice that of the approx. 48–58 km/Myr accretion rate of adjacent oceanic crust. This difference can be explained by southward jumps of the Wharton spreading ridge toward the hot spot, which transferred portions of crust from the Antarctic plate to the Indian plate, lengthening the NER. Magnetic anomalies document a small number of large spreading ridge jumps in the ocean crust immediately to the west of the NER, especially two leaving observable 65 and 42 Ma fossil spreading ridges. In contrast, complex magnetic anomaly progressions and morphology imply that smaller spreading ridge jumps occurred at more frequent intervals beneath the NER. Comparison of the NER dates and magnetic anomaly ages implies that the hot spot first emplaced NER volcanoes on the Indian plate at a distance from the Wharton Ridge, but as the northward drifting spreading ridge approached the hot spot, the two interacted, keeping later NER volcanism near the spreading ridge crest by spreading center jumps.
format Article in Journal/Newspaper
author Krishna, K.S.
Abraham, H.
Sager, W.W.
Pringle, M.S.
Frey, F.
Rao, D.G.
Levchenko, O.V.
author_facet Krishna, K.S.
Abraham, H.
Sager, W.W.
Pringle, M.S.
Frey, F.
Rao, D.G.
Levchenko, O.V.
author_sort Krishna, K.S.
title Tectonics of the Ninetyeast Ridge derived from spreading records in adjacent oceanic basins and age constraints of the ridge
title_short Tectonics of the Ninetyeast Ridge derived from spreading records in adjacent oceanic basins and age constraints of the ridge
title_full Tectonics of the Ninetyeast Ridge derived from spreading records in adjacent oceanic basins and age constraints of the ridge
title_fullStr Tectonics of the Ninetyeast Ridge derived from spreading records in adjacent oceanic basins and age constraints of the ridge
title_full_unstemmed Tectonics of the Ninetyeast Ridge derived from spreading records in adjacent oceanic basins and age constraints of the ridge
title_sort tectonics of the ninetyeast ridge derived from spreading records in adjacent oceanic basins and age constraints of the ridge
publisher American Geophysical Union
publishDate 2012
url http://drs.nio.org/drs/handle/2264/4058
long_lat ENVELOPE(6.622,6.622,62.612,62.612)
ENVELOPE(157.817,157.817,-81.050,-81.050)
geographic Antarctic
Indian
Kerguelen
Ner
The Antarctic
Wharton
geographic_facet Antarctic
Indian
Kerguelen
Ner
The Antarctic
Wharton
genre Antarc*
Antarctic
genre_facet Antarc*
Antarctic
op_relation JGR_117_1.jpg
op_rights An edited version of this paper was published by AGU. Copyright [2012] AGU. To view the published open abstract, go to http://dx.doi.org/10.1029/2011JB008805
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