Coadou-Chaventon, S., Carli, E., Siegelman, L., Swart, S., Schubert, R., & Speich, S. (2026). Oceanic spatio-temporal patterns of vertical velocities in the cape basin and Agulhas Current Retroflection from two years of SWOT altimetry. Geophysical Research Letters, 53, e2025GL120831. https://doi.org/10.1029/2025GL120831
Demol, M., Ponte, A. L., Garreau, P., Bellacicco, M., Berta, M., Centurioni, L. R., et al. (2026). Large drifter experiment in the Western Mediterranean Sea reveals dynamical versus noise contributions in SWOT-KaRIn sea level. Geophysical Research Letters, 53, e2025GL121425. https://doi.org/10.1029/2025GL121425
Duranson, M., Berline, L., Guilloux, L., Della Penna, A., Ohman, M.D., Gastauer, S., Cotte, C., Bănaru, D., Garcia, T., Berta, M. and Doglioli, A., 2026. The North Balearic Front as an ecological boundary: zooplankton fine-scale distribution patterns in late spring. Biogeosciences, 23(1), pp.363-385. https://doi.org/10.5194/bg-23-363-2026
Feng, W., An, D., Hwang, C., Sun, M., Chen, X., Zhang, Z., … & Zhong, M. (2026). SYSU_Topo: a 1-arc-minute global bathymetry from SWOT-derived gravity using the gravity-geological method. Scientific Data. https://www.nature.com/articles/s41597-026-06641-5
Goret, C., Koch-Larrouy, A., Kouogang, F., de Macedo, C.R., M’Hamdi, A., Magalhães, J.M., da Silva, J.C.B., Tchilibou, M., Artana, C., Dadou, I. and Delepoulle, A., 2026. Internal solitary waves refraction and diffraction from interaction with eddies off the Amazon Shelf from SWOT. Ocean Science, 22(1), pp.679-698. https://doi.org/10.5194/os-22-679-2026
Joël, A., Doglioli, A. M., Bosse, A., Bouruet-Aubertot, P., Buniak, L., Capet, X., et al. (2026). Ocean circulation modulating the nutrient distribution and fluxes at regional and fine scales: A case study in the Northwestern Mediterranean Sea. Geophysical Research Letters, 53, e2025GL120726. https://doi.org/10.1029/2025GL120726
Kerry, C., Keating, S.R., Roughan, M., Azaneu, M. and Brassington, G.B., 2026. Wide‐swath satellite altimetry data improves modeled mesoscale and submesoscale dynamics in a western boundary current. Geophysical Research Letters, 53(2), p.e2025GL117574. https://doi.org/10.1029/2025GL117574
Oms, L., Doglioli, A., Messié, M. et al. Fine-scale observations reveal distinct frontal phytoplankton communities. Commun Earth Environ7, 468 (2026). https://doi.org/10.1038/s43247-026-03350-0
Poli, P., Ardhuin, F., Takano, T. et al. Swell-driven bursts of 26 s and 16 s seismic spectral peaks in the Gulf of Guinea. Nat Commun17, 4234 (2026). https://doi.org/10.1038/s41467-026-71541-6
Rebouillat, E., Oruba, L., Hopuare, M., Planes, S. and Dormy, E., 2026. SWOT sheds light on seiche oscillations within atoll islands. Geophysical Research Letters, 53(4), p.e2025GL119801. https://doi.org/10.1029/2025GL119801
Rolland, R., Bouruet-Aubertot, P., Cuypers, Y., Bosse, A., Petrenko, A., Maytie, T., et al. (2026). Near-inertial wave trapping inside a fine-scale anticyclonic eddy during the BioSWOT-Med 2023 cruise: Turbulence and energy flux. Journal of Geophysical Research: Oceans, 131, e2025JC022984. https://doi.org/10.1029/2025JC022984
Tchonang, B.C., Wang, J., Waterhouse, A.F., Lucas, A.J., Griffin, C., Archer, M.R., Kachelein, L., Send, U., Lankhorst, M., Sevadjian, J. and Fu, L.L., 2026. SWOT geostrophic velocity validation against in situ measurements in the California current. Earth and Space Science, 13(2), p.e2025EA004424. https://doi.org/10.1029/2025EA004424
Zaron, E.D., Waterhouse, A.F., Wang, J., Send, U. and Lucas, A.J., 2026. Observations of baroclinic tides in the California Current from the SWOT satellite altimeter and in situ data. Journal of Geophysical Research: Oceans, 131(2), p.e2025JC023119.https://doi.org/10.1029/2025JC023119
2025
Archer M., Wang J., Klein P., Dibarboure G., Fu L-L. (2025). Wide-swath satellite altimetry unveils global submesoscale ocean dynamics. Nature 640, 691–696.https://www.nature.com/articles/s41586-025-08722-8
Bohé, A., Chen, A., Chen, C., Dubois, P., Fore, A., Molero, B., Peral, E., Raynal, M., Stiles, B., Ardhuin, F. and Hay, A., 2025. Measuring Significant Wave Height fields in two dimensions at kilometric scales with SWOT. IEEE Transactions on Geoscience and Remote Sensing. 10.1109/TGRS.2025.3551605
Carli E., Tranchant, Y.-T., Siegelman, L., Le Guillou, F., Morrow, R., Ballarotta, M., & Vergara, O. (2025). Southern ocean 3D eddy diagnostics derived from SWOT. Journal of Geophysical Research: Oceans, 130, e2024JC022307. https://doi.org/10.1029/2024JC022307
Coadou‐Chaventon, S., Swart, S., Novelli, G., & Speich, S. (2025). Resolving sharper fronts of the Agulhas Current Retroflection using SWOT altimetry. Geophysical Research Letters, 52, e2025GL115203. https://doi.org/10.1029/2025GL115203
Cutolo E., J. Wang, R. Fablet and C. Granero – Simulation Informed Generative AI Ocean Analysis: Application to SWOT KaRIN Noise submitted to GRL preprint link
Fortunato, L., Gómez-Navarro, L., Combes, V., Cotroneo, Y., Aulicino, G., & Pascual, A. (2025). Coastal Eddy Detection in the Balearic Sea: SWOT Capabilities. Remote Sensing, 17(15), 2552. https://doi.org/10.3390/rs17152552
Fouchet, E., Benkiran, M., Le Traon, P. Y. & Remy, E. Comparison of a global high-resolution ocean data assimilation system with SWOT observations. Front. Mar. Sci.12, (2025). https://doi.org/10.3389/fmars.2025.1563934.
Garcia, T., Oms, L., Milhaud, X., Doglioli, A., Messié, M., Vandekerkhove, P., Lacour, C., Grégori, G., Pommeret, D. (2025). A statistical approach to unveil phytoplankton adaptation to ocean fronts. https://hal.science/hal-05012274v1
Hay, A., Watson, C., Legresy, B., King, M., Zhou, B., Beardsley, J., & Bohe, A. (2025). In-situ geometric validation of SWOT satellite observations in Bass Strait, Australia. Earth and Space Science.https://doi.org/10.1029/2025EA004326
Ho, A., Wang, J., Haines, B., Wu, A. and Stalin, S., 2025. In situ validation of small‐scale spatial variability in significant wave height observations from SWOT. Earth and Space Science, 12(12), p.e2025EA004286. https://doi.org/10.1029/2025EA004286
Jacobs, G., D’Addezio, J., & Bartels, B. (2025). SWOT cross-track error characteristics estimated from observations. Journal of Geophysical Research: Oceans, 130. https://doi.org/10.1029/2024JC021535
Kachelein L., Wang, J., Lucas, A. J., Delpech, A., Farrar, J. T., Archer, M., … & Schofield, O. (2025). Sub‐100 km ocean processes revealed by structure functions of SWOT sea surface height and in situ observing network. Journal of Geophysical Research: Oceans, 130(11), e2025JC022639. https://doi.org/10.1029/2025JC022639
Kacimi, S., Jaruwatanadilok, S., & Kwok, R. (2025). SWOT observations over sea ice: A first look. Geophysical Research Letters, 52. https://doi.org/10.1029/2025GL116079
Li, Z., Guo, J., Hwang, C., Yu, D., Zhang, H., Sun, H., & Liu, X. (2025). Tailored method for optimizing deflection of the vertical model using multi-directional geoid gradients from SWOT/KaRIn observations. Geophysical Journal International, ggaf484. https://doi.org/10.1093/gji/ggaf484
Passaro M. (2025). Can satellite altimetry observe coastally trapped waves on sub-monthly timescales? Ocean Science 21.5 (2025): 2663-2679. https://doi.org/10.5194/os-21-2663-2025
Tranchant, Y.T., Tranchant, Y.-T., Legresy, B., Foppert, A., Pena-Molino, B., & Phillips, H. (2025). SWOT reveals fine-scale balanced motions driving near-surface currents and dispersion in the Antarctic Circumpolar Current. Earth and Space Science, 12, e2025EA004248. https://doi.org/10.1029/2025EA004248
Vega-Gimenez, D., Amores, A., Paris, A., & Pascual, A. (2025). Expanding the coastal observation frontier: SWOT reveals the spatial footprint of storm surges. Geophysical Research Letters, 52, e2025GL117299. https://doi.org/10.1029/2025GL117299
Verger-Miralles, E., Mourre, B., Gómez‐Navarro, L., Barceló‐Llull, B., Casas, B., Cutolo, E., Díaz‐Barroso, L., d’Ovidio, F., Tarry, D.R., Zarokanellos, N.D. and Pascual, A., 2025. SWOT enhances small‐scale eddy detection in the Mediterranean Sea. Geophysical Research Letters, 52(16), p.e2025GL116480. https://doi.org/10.1029/2025GL116480
Yu, D and C Hwang. Optimizing SWOT fast-sampling data for marine gravity recovery: lessons for the 21-day science phase. Remote Sensing of Environment, 328, 114903, 2025. https://doi.org/10.1016/j.rse.2025.114903
Zhang, L, C Hwang, HY Liu, ET Chang, and D Yu. Automated Eddy Identification and Tracking in the Northwest Pacific Based on Conventional Altimeter and SWOT Data. Remote Sensing,17(10), 1665, 2025. https://doi.org/10.3390/rs17101665
2024
Ardhuin, F., Molero, B., Bohé, A., Nouguier, F., Collard, F., Houghton, I., et al. (2024). Phase-resolved swells across ocean basins in SWOT altimetry data: Revealing centimeter-scale wave heights including coastal reflection. Geophysical Research Letters, 51, e2024GL109658. link
Bohé, A., Chen, A., Chen, C., Dubois, P., Fore, A., Molero, B., Peral, E., Raynal, M., Stiles, B., Ardhuin, F., Hay, A., Legresy, B., Lenain, L., Villas Boas, A.B. (2024) Measuring significant wave height fields in two dimensions at kilometric scale with SWOT. IEEE TGRS. link to the paper
Carli, E., Siegelman, L., Morrow, R., & Vergara, O. (2024). Surface quasi geostrophic reconstruction of vertical velocities and vertical heat fluxes in the Southern Ocean: Perspectives for SWOT. Journal of Geophysical Research: Oceans, 129(9), e2024JC021216. https://doi.org/10.1029/2024JC021216
Du, T., & Jing, Z. (2024). Fine-Scale Eddies Detected by SWOT in the Kuroshio Extension. Remote Sensing, 16(18), 3488. https://doi.org/10.3390/rs16183488
Hart‐Davis, M.G., Andersen, O.B., Ray, R.D., Zaron, E.D., Schwatke, C., Arildsen, R.L., Dettmering, D. and Nielsen, K., 2024. Tides in complex coastal regions: Early case studies from wide‐swath SWOT measurements. Geophysical Research Letters, 51(20), https://doi.org/10.1029/2024GL109983
Hwang, C & D Yu. Transforming coastal mapping from space. Science, 386(6727), 1222-1223, 2024. DOI: 10.1126/science.adu0697
Yu, Y., Sandwell, D. T., Dibarboure, G., Chen, C., & Wang, J. (2024). Accuracy and resolution of SWOT altimetry: Foundation Seamounts. Earth and Space Science, 11. https://doi.org/10.1029/2024EA003581
Yu, DC, Z Weng, C Hwang, H Zhu, J Luo, J Yuan, and S Ge. Seamount detection using SWOT-derived vertical gravity gradient: an automatic identifying algorithm, Geophysical Journal International, 237, 1780–1793, 2024. https://doi.org/10.1093/gji/ggae138
Zhang, Z., Miao, M., Qiu, B., Tian, J., Jing, Z., Chen, G., et al. (2024). Submesoscale Eddies Detected by SWOT and Moored Observations in the Northwestern Pacific. Geophysical Research Letters, 51(15), e2024GL110000. https://doi.org/10.1029/2024GL110000
2023
Carli, E., Morrow, R., Vergara, O., Chevrier, R., & Renault, L. (2023). Ocean 2D eddy energy fluxes from small mesoscale processes with SWOT. Ocean Science, 19(5), 1413-1435. https://doi.org/10.5194/os-19-1413-2023
Yu, DC, C Hwang, H Zhu, and S Ge. The Tikhonov-L-curve regularization method for determining the best geoid gradients from SWOT altimetry, Journal of Geodesy, 97(10), 93, 2023. https://doi.org/10.1007/s00190-023-01783-5
2022
Yu, DC and C Hwang. Calibrating error variance and scaling global covariance function of geoid gradients for optimal determinations of gravity anomaly and gravity gradient from altimetry, Journal of Geodesy, 96(61), 2022.https://doi.org/10.1007/s00190-022-01647-4