Publications
Smith, B. E., Sutterley, T. C., Fricker, H. A., Padman, L., Siegfried,
M. R., Black, T., et al. (2026). ICESat-2 land ice
products resolve Greenland and Antarctic ice-sheet height changes on
seasonal to multiyear time scales. Journal of
Glaciology, 72. https://doi.org/10.1017/jog.2026.10152
Magruder, L. A., Neumann, T., Kurtz, N., Sutterley, T. C., Hancock, D.,
Vornberger, P., et al. (2025). Assessment of the
Ice, Cloud, and Land Elevation Satellite-2 Performance Against Prime
Mission Science Requirements. Earth and Space Science,
12(4). https://doi.org/10.1029/2025EA004221
Zemp, M., Jakob, L., Dussaillant, I., Nussbaumer, S. U., Gourmelen, N.,
Dubber, S., et al. (2025). Community estimate of
global glacier mass changes from 2000 to 2023. Nature,
639(8054), 382–388. https://doi.org/10.1038/s41586-024-08545-z
Bishop-Taylor, R., Phillips, C., Sagar, S., Newey, V., & Sutterley,
T. (2025). eo-tides: Tide modelling tools for
large-scale satellite Earth observation analysis. Journal of
Open Source Software, 10(109), 7786. https://doi.org/10.21105/joss.07786
Zemp, M., Jakob, L., Brun, F., Sutterley, T., & Menounos, B. (2025).
Glacier Monitoring from Space Is Crucial, and at
Risk. Eos, 106. https://doi.org/10.1029/2025EO250290
Robbins, J., Sutterley, T., Neumann, T., Kurtz, N., Bagnardi, M., Brunt,
K., et al. (2025). ICESat-2 Data Comparison User’s
Guide. https://doi.org/10.5281/zenodo.16389971
Verboncoeur, H., Siegfried, M. R., Holschuh, N., Winberry, J. P., Byrne,
D., Sauthoff, W., et al. (2025). Multi-decadal
evolution of Crary Ice Rise region, West Antarctica, amid modern
ice-stream deceleration. Journal of Glaciology,
71. https://doi.org/10.1017/jog.2024.79
Sutterley, T. C., Howard, S. L., Padman, L., & Siegfried, M. R.
(2025). pyTMD: Python-based tidal prediction
software. Journal of Open Source Software,
10(116), 8566. https://doi.org/10.21105/joss.08566
Smith, B. E., Studinger, M., Sutterley, T., Fair, Z., & Neumann, T.
(2025). Understanding biases in ICESat-2 data due
to subsurface scattering using Airborne Topographic Mapper waveform
data. The Cryosphere, 19(3), 975–995. https://doi.org/10.5194/tc-19-975-2025
Studinger, M., Smith, B. E., Kurtz, N., Petty, A., Sutterley, T., &
Tilling, R. (2024). Estimating differential
penetration of green (532 nm) laser light over sea ice with NASA’s
Airborne Topographic Mapper: observations and models. The
Cryosphere, 18(5), 2625–2652. https://doi.org/10.5194/tc-18-2625-2024
Greene, C. A., Erofeeva, S., Padman, L., Howard, S. L., Sutterley, T.,
& Egbert, G. (2024). Tide Model Driver for
MATLAB. Journal of Open Source Software, 9(95),
6018. https://doi.org/10.21105/joss.06018
Smith, B. E., Medley, B., Fettweis, X., Sutterley, T., A, P., Porter,
D., & Tedesco, M. (2023). Evaluating Greenland
surface-mass-balance and firn-densification data using ICESat-2
altimetry. The Cryosphere, 17(2), 789–808. https://doi.org/10.5194/tc-17-789-2023
Scheick, J., Leong, W. J., Bisson, K., Arendt, A., Bhushan, S., Fair,
Z., et al. (2023). icepyx: querying, obtaining,
analyzing, and manipulating ICESat-2 datasets. Journal of
Open Source Software, 8(84), 4912. https://doi.org/10.21105/joss.04912
Otosaka, I. N., Shepherd, A., Ivins, E. R., Schlegel, N.-J., Amory, C.,
Broeke, M. R. van den, et al. (2023). Mass balance
of the Greenland and Antarctic ice sheets from 1992 to 2020.
Earth System Science Data, 15(4), 1597–1616. https://doi.org/10.5194/essd-15-1597-2023
Ryan, J. C., Medley, B., Stevens, C. M., Sutterley, T. C., &
Siegfried, M. R. (2023). Role of Snowfall Versus
Air Temperatures for Greenland Ice Sheet Melt-Albedo Feedbacks.
Earth and Space Science, 10(11). https://doi.org/10.1029/2023EA003158
Shean, D., Swinski, J. P., Smith, B., Sutterley, T., Henderson, S.,
Ugarte, C., et al. (2023). SlideRule: Enabling
rapid, scalable, open science for the NASA ICESat-2 mission and
beyond. Journal of Open Source Software, 8(81),
4982. https://doi.org/10.21105/joss.04982
Mohajerani, Y., Shean, D., Arendt, A., & Sutterley, T. C. (2021).
Automated Dynamic Mascon Generation for GRACE and
GRACE-FO Harmonic Processing. Remote Sensing,
13(3134). https://doi.org/10.3390/rs13163134
Brunt, K. M., Smith, B. E., Sutterley, T. C., Kurtz, N. T., &
Neumann, T. A. (2021). Comparisons of Satellite and
Airborne Altimetry With Ground-Based Data From the Interior of the
Antarctic Ice Sheet. Geophysical Research Letters,
48(2). https://doi.org/10.1029/2020GL090572
Alley, K. E., Wild, C. T., Luckman, A., Scambos, T. A., Truffer, M.,
Pettit, E. C., et al. (2021). Two decades of
dynamic change and progressive destabilization on the Thwaites Eastern
Ice Shelf. The Cryosphere, 15(11), 5187–5203.
https://doi.org/10.5194/tc-15-5187-2021
Velicogna, I., Mohajerani, Y., A, G., Landerer, F., Mouginot, J., Noël,
B., et al. (2020). Continuity of Ice Sheet Mass
Loss in Greenland and Antarctica From the GRACE and GRACE Follow-On
Missions. Geophysical Research Letters, 47(8).
https://doi.org/10.1029/2020GL087291
Hawley, R. L., Neumann, T. A., Stevens, C. M., Brunt, K. M., &
Sutterley, T. C. (2020). Greenland Ice Sheet
Elevation Change: Direct Observation of Process and Attribution at
Summit. Geophysical Research Letters, 47(22).
https://doi.org/10.1029/2020GL088864
Shepherd, A., Ivins, E., Rignot, E., Smith, B., Broeke, M. van den,
Velicogna, I., et al. (2020). Mass balance of the
Greenland Ice Sheet from 1992 to 2018. Nature,
579, 233–239. https://doi.org/10.1038/s41586-019-1855-2
Sutterley, T. C., Velicogna, I., & Hsu, C.-W. (2020). Self-Consistent Ice Mass Balance and Regional Sea Level
From Time-Variable Gravity. Earth and Space Science,
7(3). https://doi.org/10.1029/2019EA000860
Sutterley, T. C., Markus, T., Neumann, T. A., Broeke, M. van den,
Wessem, J. M. van, & Ligtenberg, S. R. M. (2019). Antarctic ice shelf thickness change from multimission
lidar mapping. The Cryosphere, 13(7),
1801–1817. https://doi.org/10.5194/tc-13-1801-2019
Sutterley, T. C., & Velicogna, I. (2019). Improved Estimates of Geocenter Variability from
Time-Variable Gravity and Ocean Model Outputs. Remote
Sensing, 11(2108). https://doi.org/10.3390/rs11182108
Kishore, P., Velicogna, I., Sutterley, T. C., Mohajerani, Y., Ciracı̀,
E., & Madhavi, G. N. (2018). A case study of
mesospheric planetary waves observed over a three-radar network using
empirical mode decomposition. Annales Geophysicae,
36(3), 925–936. https://doi.org/10.5194/angeo-36-925-2018
Peltier, W. R., Argus, D. F., & Drummond, R. (2018). Comment on “An Assessment of the ICE-6G_C (VM5a)
Glacial Isostatic Adjustment Model” by Purcell et al.
Journal of Geophysical Research: Solid Earth, 123(2),
2019–2028. https://doi.org/10.1002/2016JB013844
Sutterley, T. C., Velicogna, I., Fettweis, X., Rignot, E., Noël, B.,
& Broeke, M. van den. (2018). Evaluation of
Reconstructions of Snow/Ice Melt in Greenland by Regional Atmospheric
Climate Models Using Laser Altimetry Data. Geophysical
Research Letters, 45(16), 8324–8333. https://doi.org/10.1029/2018GL078645
Ciracì, E., Velicogna, I., & Sutterley, T. C. (2018). Mass Balance of Novaya Zemlya Archipelago, Russian High
Arctic, Using Time-Variable Gravity from GRACE and Altimetry Data from
ICESat and CryoSat-2. Remote Sensing, 10(1817).
https://doi.org/10.3390/rs10111817
Shepherd, A., Ivins, E., Rignot, E., Smith, B., Broeke, M. van den,
Velicogna, I., et al. (2018). Mass balance of the
Antarctic Ice Sheet from 1992 to 2017. Nature,
558(7709), 219–222. https://doi.org/10.1038/s41586-018-0179-y
Kishore, P., Jayalakshmi, J., Lin, P.-L., Velicogna, I., Sutterley, T.
C., Ciracì, E., et al. (2017). Investigation of
Kelvin wave periods during Hai-Tang typhoon using Empirical Mode
Decomposition. Journal of Atmospheric and Solar-Terrestrial
Physics, 164, 192–202. https://doi.org/10.1016/j.jastp.2017.07.025
Kishore, P., Jyothi, S., Basha, G., Rao, S. V. B., Rajeevan, M.,
Velicogna, I., & Sutterley, T. C. (2016). Precipitation climatology over India: validation with
observations and reanalysis datasets and spatial trends.
Climate Dynamics, 46(1-2), 541–556. https://doi.org/10.1007/s00382-015-2597-y
Khazendar, A., Rignot, E. J., Schroeder, D. M., Seroussi, H., Schodlok,
M. P., Scheuchl, B., et al. (2016). Rapid submarine
ice melting in the grounding zones of ice shelves in West
Antarctica. Nature Communications, 7(13243). https://doi.org/10.1038/ncomms13243
Kishore, P., Velicogna, I., Ratnam, M., Basha, G., Ouarda, M. J.,
Namboothiri, S. P., et al. (2016). Sudden
stratospheric warmings observed in the last decade by satellite
measurements. Remote Sensing of Environment,
184, 263–275. https://doi.org/10.1016/j.rse.2016.07.008
Basha, G., Kishore, P., Venkat Ratnam, M., Ouarda, M. J., Velicogna, I.,
& Sutterley, T. (2015). Vertical and
latitudinal variation of the intertropical convergence zone derived
using GPS radio occultation measurements. Remote Sensing of
Environment, 163, 262–269. https://doi.org/10.1016/j.rse.2015.03.024
Sutterley, T. C., Velicogna, I., Csatho, B., Broeke, M. R. van den,
Rezvanbehbahani, S., & Babonis, G. (2014). Evaluating Greenland glacial isostatic adjustment
corrections using GRACE, altimetry and surface mass balance data.
Environmental Research Letters, 9(1), 014004. https://doi.org/10.1088/1748-9326/9/1/014004
Sutterley, T. C., Velicogna, I., Rignot, E., Mouginot, J., Flament, T.,
Broeke, M. R. van den, et al. (2014). Mass loss of
the Amundsen Sea Embayment of West Antarctica from four independent
techniques. Geophysical Research Letters,
41(23), 8421–8428. https://doi.org/10.1002/2014GL061940
Velicogna, I., Sutterley, T. C., & Broeke, M. R. van den. (2014).
Regional acceleration in ice mass loss from
Greenland and Antarctica using GRACE time-variable gravity data.
Geophysical Research Letters, 41(22), 8130–8137. https://doi.org/10.1002/2014GL061052