1. Babb, D. G., Landy, J. C., Barber, D. G., and Galley, R. J.:
Winter sea ice export from the Beaufort Sea as a preconditioning mechanism for enhanced summer melt: A case study of 2016, J. Geophys. Res.-Oceans,
124, 6575–6600, https://doi.org/10.1029/2019JC015053, 2019. a, b
2. Babb, D. G., Galley, R. J., Howell, S. E. L., Landy, J. C., Stroeve, J. C., and Barber, D. G.:
Increasing Multiyear Sea Ice Loss in the Beaufort Sea: A New Export Pathway for the Diminishing Multiyear Ice Cover of the Arctic Ocean, Geophys. Res. Lett., 49, e2021GL097595, https://doi.org/10.1029/2021GL097595, 2022. a
3. Eicken, H., Shapiro, L., Gaylord, A., Mahoney, A., and Cotter, P.:
Mapping and characterization of recurring spring leads and landfast ice in the Beaufort and Chukchi Seas, Final Report, OCD Study Boem 2005-068, https://espis.boem.gov/final%20reports/3482.pdf (last access: 6 December 2022), 2005. a, b
4. Fetterer, F., Savoie, M., Helfrich, S., and Clemente-Colón, P.:
Multisensor Analyzed Sea Ice Extent – Northern Hemisphere (MASIE-NH), Version 1, Boulder, Colorado USA. National Snow and Ice Data Center [data set], https://doi.org/10.7265/N5GT5K3K, 2010. a
5. GEBCO Bathymetric Compilation Group 2022:
The GEBCO_2022 Grid – a continuous terrain model of the global oceans and land, NERC EDS British Oceanographic Data Centre NOC [data set], https://doi.org/10.5285/e0f0bb80-ab44-2739-e053-6c86abc0289c, 2022. a, b