Automated Author Profile

Hogan, Kelly A

Current S-Index

10.2

Sum of Dataset Indices for all datasets

Average Dataset Index per Dataset

5.1

Average Dataset Index per dataset

Total Datasets

2

Total datasets for this author

Average FAIR Score

95.2%

Average FAIR Score per dataset

Total Citations

20

Total citations to the author's datasets

Total Mentions

1

Total mentions of the author's datasets

S-Index Interpretation

S-Index Over Time

Cumulative Citations Over Time

Cumulative Mentions Over Time

Datasets

The International Bathymetric Chart of the Southern Ocean Version 2 (IBCSO v2)

The International Bathymetric Chart of the Southern Ocean Version 2 (IBCSO v2) is a digital bathymetric model (DBM) for the area south of 50° S with special emphasis on the bathymetry of the Southern Ocean. IBCSO v2 has a resolution of 500 m × 500 m in a Polar Stereographic projection (EPSG: 9354). The total data coverage of the seafloor is 23.79% with a multibeam-only data coverage of 22.32%. The remaining 1.47% include singlebeam and other data. IBCSO v2 is the most authoritative seafloor map of the area south of 50°S.IBCSO is a regional mapping project of the General Bathymetric Chart of the Ocean (GEBCO) supported by the Nippon Foundation – GEBCO Seabed 2030 Project. GEBCO is a project under the auspices of the International Hydrographic Organization (IHO) and the Intergovernmental Oceanographic Commission (IOC) with the goal to produce the authoritative map of the world's oceans. The IBCSO Project is also an integral part of the Antarctic research community and an expert group of the Scientific Committee on Antarctic Research (SCAR). For further information about the IBCSO Project, please visit http://www.ibcso.org.

Authors

  • Dorschel, Boris ;
  • Hehemann, Laura ;
  • Viquerat, Sacha ;
  • Warnke, Fynn ;
  • Dreutter, Simon ;
  • Schulze Tenberge, Yvonne ;
  • Accettella, Daniela ;
  • An, Lu ;
  • Barrios, Felipe ;
  • Bazhenova, Evgenia A ;
  • Black, Jenny ;
  • Bohoyo, Fernando ;
  • Davey, Craig ;
  • de Santis, Laura ;
  • Escutia Dotti, Carlota ;
  • Frémand, Alice C ;
  • Fretwell, Peter T ;
  • Gales, Jenny A ;
  • Gao, Jinyao ;
  • Gasperini, Luca ;
  • Greenbaum, Jamin S ;
  • Henderson Jencks, Jennifer ;
  • Hogan, Kelly A ;
  • Hong, Jong Kuk ;
  • Jakobsson, Martin ;
  • Jensen, Laura ;
  • Kool, Johnathan ;
  • Larin, Sergei ;
  • Larter, Robert D ;
  • Leitchenkov, German L ;
  • Loubrieu, Benoît ;
  • Mackay, Kevin ;
  • Mayer, Larry ;
  • Millan, Romain ;
  • Morlighem, Mathieu ;
  • Navidad, Francisco ;
  • Nitsche, Frank-Oliver ;
  • Nogi, Yoshifumi ;
  • Pertuisot, Cécile ;
  • Post, Alexandra L ;
  • Pritchard, Hamish D ;
  • Purser, Autun ;
  • Rebesco, Michele ;
  • Rignot, Eric ;
  • Roberts, Jason L ;
  • Rovere, Marzia ;
  • Ryzhov, Ivan ;
  • Sauli, Chiara ;
  • Schmitt, Thierry ;
  • Silvano, Alessandro ;
  • Smith, Jodie E ;
  • Snaith, Helen ;
  • Tate, Alex J ;
  • Tinto, Kirsty ;
  • Vandenbossche, Philippe ;
  • Weatherall, Pauline ;
  • Wintersteller, Paul ;
  • Yang, Chunguo ;
  • Zhang, Tao ;
  • Arndt, Jan Erik
18 Citations1 Mention96% FAIR9.0 Dataset Index
10.1594/pangaea.9375742022

(Table 2) AMS radiocarbon dates from sediment cores obtained during James Clark Ross cruise JR142, Kvitøya Trough

High-resolution geophysical and sediment core data are used to investigate the pattern and dynamics of former ice flow in Kvitøya Trough, northwestern Barents Sea. A new swath-bathymetric dataset identifies three types of submarine landform in the study area (streamlined landforms, meltwater channels and cavities, iceberg scours). Subglacially produced streamlined landforms provide a record of ice flow through Kvitøya Trough during the last glaciation. Flow directions are inferred from the orientations of streamlined landforms (drumlins, crag-and-tail features). Ice flowed northward for at least 135 km from an ice divide at the southern end of Kvitøya Trough. A large channel-cavity system incised into bedrock in the southern trough indicates that subglacial meltwater was present at the former ice-sheet base. Modest landform elongation ratios and a lack of mega-scale glacial lineations suggest that, although ice in Kvitøya Trough was melting at the bed and flowed faster than the likely thin and cold-based ice on adjacent banks, a major ice stream probably did not occupy the trough. Retreat was relatively rapid after 14-13.5 14C kyr B.P. and probably progressed via ice sheet-bed decoupling in response to rising sea level. There is little evidence for still stands during ice retreat or of ice-proximal deglacial sediments. Relict iceberg scours in present-day water depths of more than 350 m in the northern trough indicate that calving was an important mass loss mechanism during retreat.

Authors

  • Hogan, Kelly A ;
  • Dowdeswell, Julian A ;
  • Noormets, R ;
  • Evans, Jeffrey ;
  • Ó Cofaigh, Colm ;
  • Jakobsson, Martin
2 Citations0 Mentions94% FAIR1.2 Dataset Index
10.1594/pangaea.8112882010