Palaeomagnetic records of the Matuyama-Brunhes polarity transition were obtained from seven, low sedimentation rate, deepsea cores from the Pacific Ocean. The cores were taken near the 180° meridian and provide a latitudinal transect of transition records extending from 45.3° N to 33.4° S. Examination of these records suggests that low sedimentation rate cores may not be capable of recording the fine details of transitional field behaviour, but there are indications that these cores may, in fact, provide accurate records of the more general features of the reversal. Most notable of these features is that the duration of the transition is dependent on the site latitude, with durations at mid-latitudes being more than a factor of 2 longer tha...
International audienceMatuyama-Brunhes geomagnetic polarity transitions recorded in Holes 659C and 6...
Two records of the geomagnetic polarity transition at the beginning of the Jaramillo Subchron (0.97 ...
Nowadays the Arctic Ocean is a region of high scientific interest and it’s more and more considered ...
The Brunhes-Matuyama polarity transition was studied in three deep-sea sediment cores obtained from ...
A detailed record of the lower Jaramillo (reversed to normal) polarity transition was obtained from ...
We present a record of the Matuyama-Brunhes (0.73 Ma) polarity transition from a southern hemisphere...
Paleomagnetic records of the 0.78 Ma Brunhes/Matuyama (B/M) polarity reversal interval described fro...
Two normal to reverse (N to R) geomagnetic polarity transitions were obtained from a Southern Hemisp...
The period some 20-25 kyr just prior to the most recent generally recognized geomagnetic field polar...
Eleven geomagnetic polarity transition records from five hydraulic piston core sites in the North At...
Detailed sampling of two short magnetozones within the Matuyama Chronozone recorded at DSDP Site 609...
Measurements of the NRM of a 26 m long deep-sea core from the southern Indian Ocean indicated the pr...
Analysis of old paleomagnetic data and new mineral magnetic data from a sediment core from the centr...
We present four new records of the Matuyama-Brunhes (M-B) reversal from sediments of the Equatorial ...
AbstractWe present four new records of the Matuyama–Brunhes (M–B) reversal from sediments of the Equ...
International audienceMatuyama-Brunhes geomagnetic polarity transitions recorded in Holes 659C and 6...
Two records of the geomagnetic polarity transition at the beginning of the Jaramillo Subchron (0.97 ...
Nowadays the Arctic Ocean is a region of high scientific interest and it’s more and more considered ...
The Brunhes-Matuyama polarity transition was studied in three deep-sea sediment cores obtained from ...
A detailed record of the lower Jaramillo (reversed to normal) polarity transition was obtained from ...
We present a record of the Matuyama-Brunhes (0.73 Ma) polarity transition from a southern hemisphere...
Paleomagnetic records of the 0.78 Ma Brunhes/Matuyama (B/M) polarity reversal interval described fro...
Two normal to reverse (N to R) geomagnetic polarity transitions were obtained from a Southern Hemisp...
The period some 20-25 kyr just prior to the most recent generally recognized geomagnetic field polar...
Eleven geomagnetic polarity transition records from five hydraulic piston core sites in the North At...
Detailed sampling of two short magnetozones within the Matuyama Chronozone recorded at DSDP Site 609...
Measurements of the NRM of a 26 m long deep-sea core from the southern Indian Ocean indicated the pr...
Analysis of old paleomagnetic data and new mineral magnetic data from a sediment core from the centr...
We present four new records of the Matuyama-Brunhes (M-B) reversal from sediments of the Equatorial ...
AbstractWe present four new records of the Matuyama–Brunhes (M–B) reversal from sediments of the Equ...
International audienceMatuyama-Brunhes geomagnetic polarity transitions recorded in Holes 659C and 6...
Two records of the geomagnetic polarity transition at the beginning of the Jaramillo Subchron (0.97 ...
Nowadays the Arctic Ocean is a region of high scientific interest and it’s more and more considered ...