Satellite gravity gradient grids for geophysics J Bouman, J Ebbing, M Fuchs, J Sebera, V Lieb, W Szwillus, R Haagmans, ... Scientific reports 6 (1), 21050, 2016 | 83 | 2016 |
Time-variable gravity fields derived from GPS tracking of Swarm A Bezděk, J Sebera, J Teixeira da Encarnação, J Klokočník Geophysical Journal International 205 (3), 1665-1669, 2016 | 48 | 2016 |
Gravity field models from kinematic orbits of CHAMP, GRACE and GOCE satellites A Bezděk, J Sebera, J Klokočník, J Kostelecký Advances in Space Research 53 (3), 412-429, 2014 | 46 | 2014 |
Iterative Spherical Downward Continuation Applied to Magnetic and Gravitational Data from Satellite J Sebera, M Šprlák, P Novák, A Bezděk, M Vaľko Surveys in Geophysics 35 (4), 941-958, 2014 | 45 | 2014 |
Matlab script for 3D visualizing geodata on a rotating globe A Bezděk, J Sebera Computers & geosciences 56, 127-130, 2013 | 45 | 2013 |
Description of the multi-approach gravity field models from Swarm GPS data J Teixeira da Encarnação, P Visser, D Arnold, A Bezdek, E Doornbos, ... Earth System Science Data 12 (2), 1385-1417, 2020 | 43 | 2020 |
Gravity field models derived from Swarm GPS data J Teixeira da Encarnação, D Arnold, A Bezděk, C Dahle, E Doornbos, ... Earth, Planets and Space 68, 1-15, 2016 | 41 | 2016 |
FFT-based high-performance spherical harmonic transformation C Gruber, P Novák, J Sebera Studia Geophysica et Geodaetica 55, 489-500, 2011 | 31 | 2011 |
On computing ellipsoidal harmonics using Jekeli’s renormalization J Sebera, J Bouman, W Bosch Journal of Geodesy 86, 713-726, 2012 | 29 | 2012 |
Candidates for multiple impact craters?: Popigai and Chicxulub as seen by the global high resolution gravitational field model EGM2008 J Klokočník, J Kostelecký, I Pešek, P Novák, CA Wagner, J Sebera Solid Earth 1 (1), 71-83, 2010 | 26* | 2010 |
Spheroidal models of the exterior gravitational field of asteroids Bennu and Castalia J Sebera, A Bezděk, I Pešek, T Henych Icarus 272, 70-79, 2016 | 25 | 2016 |
The first pan-Alpine surface-gravity database, a modern compilation that crosses frontiers P Zahorec, J Papčo, R Pašteka, M Bielik, S Bonvalot, C Braitenberg, ... Earth System Science Data Discussions 2021, 1-72, 2021 | 24 | 2021 |
Short guide to direct gravitational field modelling with Hotine’s equations J Sebera, CA Wagner, A Bezděk, J Klokočník Journal of Geodesy 87 (3), 223-238, 2013 | 23 | 2013 |
Spherical integral formulas for upward/downward continuation of gravitational gradients onto gravitational gradients M Šprlák, J Sebera, M Val’ko, P Novák Journal of Geodesy 88, 179-197, 2014 | 21 | 2014 |
Comparative study of the spherical downward continuation J Sebera, M Pitoňák, E Hamáčková, P Novák Surveys in Geophysics 36 (2), 253-267, 2015 | 20 | 2015 |
Gravity spectra from the density distribution of Earth’s uppermost 435 km J Sebera, R Haagmans, R Floberghagen, J Ebbing Surveys in Geophysics 39, 227-244, 2018 | 16 | 2018 |
Assessment of systematic errors in the computation of gravity gradients from satellite altimeter data J Bouman, W Bosch, J Sebera Marine Geodesy 34 (2), 85-107, 2011 | 15 | 2011 |
Calibration of Swarm accelerometer data by GPS positioning and linear temperature correction A Bezděk, J Sebera, J Klokočník Advances in Space Research 62 (2), 317-325, 2018 | 14 | 2018 |
Validation of Swarm accelerometer data by modelled nongravitational forces A Bezděk, J Sebera, J Klokočník Advances in Space Research 59 (10), 2512-2521, 2017 | 14 | 2017 |
Global and regional gravity field determination from GOCE kinematic orbit by means of spherical radial basis functions B Bucha, A Bezděk, J Sebera, J Janák Surveys in Geophysics 36, 773-801, 2015 | 13 | 2015 |