Unfortunately this page does not have a mobile or narrow screen view. Please switch to a desktop computer or increase the size of your browser. For tablets try flipping the screen.

Data Publication

Data supplement to: A high-resolution geomagnetic relative paleointensity record from the Arctic Ocean deep water gateway deposits during the last 60 ky

Caricchi, Chiara | Lucchi, Renata Giulia | Sagnotti, Leonardo | Macrì, Patrizia | Di Roberto, Alessio | Del Carlo, Paola | Husum, Katrine | Laberg, Ian Sverre | Morigi, Caterina

(2020)

This data publication includes the paleomagnetic and rock magnetic dataset from two Calypso giant piston cores collected at the crest of the Bellsund (GS191-01PC) and Isfjorden (GS191-02PC) sediment drifts during the Eurofleets-2 PREPARED cruise, on board the R/V G.O. Sars (Lucchi et al., 2014). These sediments drift are located on the eastern side of the Fram Strait (western Spitsbergen margin).The dataset gave the opportunity to define the behavior of past geomagnetic field at high latitude and to constrain the palaeoclimatic events that occurred in a time framework spanning Marine Isotope Stage (MIS) 3 to Holocene (Caricchi et al., in press). The data are provided as raw data in .dat format and interpreted data in .xlx and tab-delimited text formats. The raw data files can be opened using a text-editor, MS Excel or equivalent software. The interpreted data are presented as a metadata table with definitions of the column heads and 5 individual tables with the content: - Metadata: definition of columns heads - Rock Magnetic-Paleomag Data 01: down-core variation of rock magnetic and paleomagnetic parameters [k (10E-05 SI); ARM (A/m); ARM/k (A/m); MDF (mT); ΔGRMNRM; NRM (A/m); MAD (°); Incl PCA (°); Decl PCA (°)] for Core GS191-01PC - Rock Magnetic-Paleomag Data 02: down core variation of rock magnetic and paleomagnetic data [k (10E-05 SI); ARM (A/m); ARM/k (A/m); MDF (mT); ΔGRMNRM; NRM (A/m); MAD (°); Incl PCA (°) Decl PCA (°)] for Core GS191-02PC - Cores Correlation: Depth of Core GS191-02PC and depth of Core GS191-02PC correlated to Core GS191-01PC, NRM (A/m); ARM(A/m) and RPI down-core variations for core GS191-02PC; Depth of Core GS191-01PC NRM (A/m); ARM(A/m) and RPI down-core variations for core GS191-01PC; tie points values. - Age Model 01: age model for Core GS191-01PC - Age Model 02: age model for Core GS191-01PC Raw data were measured at the paleomagnetic laboratory of INGV and have been analysed by DAIE software (Sagnotti, 2013). The obtained along-core variation of rock magnetic and paleomagnetic trends have been integrated with the distribution of characteristic lithofacies and the 14C ages in order to define high-resolution correlation between the cores. Core to core correlation has been computed by means of StratFit software (Sagnotti and Caricchi, 2018). The correlation process is based on the Excel forecast function and linear regression between subsequent couples of selected tie-points. This process results in the estimate of the equivalent depth of the correlated curve (core GS191-02 PC) into the depth scale of the “master” curve (GS191-01PC). Using the same method and taking into account the constraints provided by the calibrated radiocarbon ages and the litostratigraphic information, PREPARED cores have been compared to RPI and inclination variations expected at the core sites according to global geomagnetic field models (SHA.DIF.14k of Pavón-Carrasco et al., 2014; GGF.110k of Panovska et al., 2018).

Keywords


Originally assigned keywords
Paleomagnetism
Paleosecular variation
Fram Strait
Contourite drifts
Svalbard Archipelago
Environmental magnetism
Sedimentary Cores
Paleomagnetic data
Rock magnetism
EPOS
European Plate Observing System
multiscale laboratories
paleomagnetic and magnetic data
paleomagnetic data
PALEOMAGNETIC DATA
SEDIMENTS
STRATIGRAPHIC SEQUENCE
sedimentary material
Quaternary
Submarine
Core
bulk
demagnetisation type AF

Corresponding MSL vocabulary keywords
unconsolidated sediment
Quaternary
alternating field (AF) demagnetiser

MSL enriched keywords
unconsolidated sediment
Phanerozoic
Cenozoic
Quaternary
Apparatus
demagnetiser
alternating field (AF) demagnetiser
Measured property
paleointensity
relative paleointensity
Inferred behavior
natural remanent magnetisation processing
relative paleointensity
Holocene
remanent magnetisation
natural remanent magnetisation (NRM)
gyromagnetic remanent magnetisation (GRM)
anisotropy of magnetic susceptibility and remanence
natural remanent magnetisation (NRM) orientation
analysis
geochronology
carbon-14 dating
measured property
age of sample
carbon-14 age

MSL original sub domains

paleomagnetism

MSL enriched sub domains i

paleomagnetism
geochemistry


DOI

10.5880/fidgeo.2019.011


Authors

Caricchi, Chiara

0000-0001-9391-1484

INGV Istituto Nazionale di Geofisica e Volcanologia, Rome, Italy

Lucchi, Renata Giulia

0000-0001-5111-6968

OGS Istituto Nazionale di Oceanografia e di Geofisica Sperimentale, Trieste, Italy

Sagnotti, Leonardo

0000-0003-3944-201X

INGV Istituto Nazionale di Geofisica e Volcanologia, Rome, Italy

Macrì, Patrizia

detail.uri?authorId=8561855000

INGV Istituto Nazionale di Geofisica e Volcanologia, Rome, Italy

Di Roberto, Alessio

0000-0003-1167-8290

INGV Istituto Nazionale di Geofisica e Volcanologia, Rome, Italy

Del Carlo, Paola

0000-0001-5506-4579

INGV Istituto Nazionale di Geofisica e Volcanologia, Rome, Italy

Husum, Katrine

0000-0003-1380-5900

Norsk Polarinstitutt, Tromso, Norway

Laberg, Ian Sverre

detail.uri?authorId=7004100675

UiT The Arctic University of Norway, Department of Geosciences, Tromso, Norway

Morigi, Caterina

0000-0003-1340-9932

Geological Survey of Denmark and Greenland, Copenhagen, Denmark / Università di Pisa, Pisa, Italy


References

Caricchi, C., Lucchi, R. G., Sagnotti, L., Macrì, P., Di Roberto, A., Del Carlo, P., Husum, K., Laberg, J. S., & Morigi, C. (2019). A High‐Resolution Geomagnetic Relative Paleointensity Record From the Arctic Ocean Deep‐Water Gateway Deposits During the Last 60 kyr. Geochemistry, Geophysics, Geosystems, 20(5), 2355–2377. Portico. https://doi.org/10.1029/2018gc007955

10.1029/2018GC007955

IsSupplementTo

Cites

Panovska, S., Constable, C. G., & Korte, M. (2018). Extending Global Continuous Geomagnetic Field Reconstructions on Timescales Beyond Human Civilization. Geochemistry, Geophysics, Geosystems, 19(12), 4757–4772. Portico. https://doi.org/10.1029/2018gc007966

10.1029/2018gc007966

Cites

Pavón-Carrasco, F. J., Osete, M. L., Torta, J. M., & De Santis, A. (2014). A geomagnetic field model for the Holocene based on archaeomagnetic and lava flow data. Earth and Planetary Science Letters, 388, 98–109. https://doi.org/10.1016/j.epsl.2013.11.046

10.1016/j.epsl.2013.11.046

Cites

Leonardo Sagnotti. (2013). Demagnetization Analysis in Excel (DAIE). An open source workbook in Excel for viewing and analyzing demagnetization data from paleomagnetic discrete samples and u-channels. Annals of Geophysics, 56(1). https://doi.org/10.4401/ag-6282

10.4401/ag-6282

Cites

Sagnotti, L., & Caricchi, C. (2018). StratFit: An Excel Workbook for correlation of multiple stratigraphic trends. Annals of Geophysics, 61(3). https://doi.org/10.4401/ag-7619

10.4401/ag-7619

Cites

Caricchi, C., Lucchi, R. G., Sagnotti, L., Macrì, P., Di Roberto, A., Carlo, P. D., Husum, K., Laberg, J. S., &amp; Morigi, C. (2020). <i>A High‐Resolution Geomagnetic Relative Paleointensity Record From the Arctic Ocean Deep‐Water Gateway Deposits During the Last 60 kyr (Dataset)</i> (Version 2) [Data set]. Magnetics Information Consortium (MagIC). https://doi.org/10.7288/V4/MAGIC/16829

10.7288/V4/MAGIC/16829

IsVariantFormOf


Contact

Caricchi, Chiara

chiara.caricchi@ingv.it

INGV Istituto Nazionale di Geofisica e Volcanologia, Rome, Italy


Citiation

Caricchi, C., Lucchi, R. G., Sagnotti, L., Macrì, P., Di Roberto, A., Del Carlo, P., Husum, K., Laberg, I. S., & Morigi, C. (2019). Data supplement to: A high-resolution geomagnetic relative paleointensity record from the Arctic Ocean deep water gateway deposits during the last 60 ky [Data set]. GFZ Data Services. https://doi.org/10.5880/FIDGEO.2019.011


Spatial coordinates