This website is currently being migrated. For the most up-to-date astrobiology news, resources, and community announcements, please visit our new home at science.nasa.gov/astrobiology

A volcanically active planet is shown in closeup at the left side of the image with glowing eruptions and lines of lava on the surface. To the right and in the distance is a faint blue glowing ball representing the more massive planet in the system.Sixteen frames from Voyager 1's flyby of Jupiter in 1979 were merged to create this image. Jupiter's Great Red Spot is visible in the center. Jupiter's moon Europa can be seen in the foreground at the bottom left of the image.The frame is a horizontal rainbow of color on a grid. Shadows of molecules can be seen through the light as well as the jagged peaks and troughs of spectral lines.
Fizzy Super Earths and Lava Worlds“Fizzy Super-Earths: Impacts of Magma Composition on the Bulk Density and Structure of Lava Worlds.” in The Astrophysical Journal.01/03
Identifying Hydrothermal Activity on Icy Ocean Worlds“Ethene-ethanol ratios as potential indicators of hydrothermal activity at Enceladus, Europa, and other icy ocean worlds.” In Icarus.02/03
NASA Raman Spectroscopic Database"The NASA Raman spectroscopic database: Ramdb version 1.00.” In Icarus.03/03
NextPrevious
Go Explore
January 2025Applicability of two-phase modeling with compression experiments for snow compaction dynamics

Horlings, B. I., Courville, Z., Murdza, A., & Keegan, K. M. (2025). Applicability of two-phase modeling with compression experiments for snow compaction dynamics. Cold Regions Science and Technology, 229, 104336. doi:10.1016/j.coldregions.2024.104336

Particle Sedimentation in a Fluid at Low Reynolds Number: A Generalization of Hindered Settling Described by a Two‐Phase Continuum Model

Huber, C., Parmentier, E. M., & Florez, D. (2025). Particle Sedimentation in a Fluid at Low Reynolds Number: A Generalization of Hindered Settling Described by a Two‐Phase Continuum Model. Geochemistry, Geophysics, Geosystems, 26(1), None. doi:10.1029/2024gc011820

Development and Evolution of Icy Layer Outcrops on Mars' North Polar Ice Cap: Observations of Vertical and Lateral Variability

Pascuzzo, A. C., Bramson, A. M., Becerra, P., & Mustard, J. F. (2025). Development and Evolution of Icy Layer Outcrops on Mars' North Polar Ice Cap: Observations of Vertical and Lateral Variability. Journal of Geophysical Research: Planets, 130(1), None. doi:10.1029/2024je008377

Constraints on Iron Silicide Formation from a Fulgurite from Southwick Massachusetts

Abbatiello, J., Bindi, L., & Pasek, M. A. (2025). Constraints on Iron Silicide Formation from a Fulgurite from Southwick Massachusetts. Mineralogical Magazine, None, 1–22. doi:10.1180/mgm.2024.108

Episodic warm climates on early Mars primed by crustal hydration

Adams, D., Scheucher, M., Hu, R., Ehlmann, B. L., Thomas, T. B., Wordsworth, R., … Yung, Y. L. (2025). Episodic warm climates on early Mars primed by crustal hydration. Nature Geoscience. doi:10.1038/s41561-024-01626-8

The Peregrine Ion Trap Mass Spectrometer (PITMS): Results from a CLPS-delivered Mass Spectrometer

Cohen, B. A., Barber, S. J., Gawronska, A. J., Abernethy, F. A. J., Curran, N. M., Driggers, P. A., … Boccelli, S. (2025). The Peregrine Ion Trap Mass Spectrometer (PITMS): Results from a CLPS-delivered Mass Spectrometer. The Planetary Science Journal, 6(1), 14. doi:10.3847/psj/ad9927

Formation and Stability of the Propionitrile:Acetylene Co-Crystal Under Titan-Relevant Conditions

Czaplinski, E. C., Vu, T. H., Maynard-Casely, H., Ennis, C., Cable, M. L., Malaska, M. J., & Hodyss, R. (2025). Formation and Stability of the Propionitrile:Acetylene Co-Crystal Under Titan-Relevant Conditions. ACS Earth and Space Chemistry, 9(2), 253–264. doi:10.1021/acsearthspacechem.4c00262

Characterization of Titan Entry Radiative Heating in the Low Density Electric Arc Shock Tube

Fagnani, A., Brandis, A. M., & Cruden, B. A. (2025). Characterization of Titan Entry Radiative Heating in the Low Density Electric Arc Shock Tube. AIAA SCITECH 2025 Forum. doi:10.2514/6.2025-0448

JWST-TST DREAMS: A Precise Water Abundance for Hot Jupiter WASP-17b from the NIRISS SOSS Transmission Spectrum

Louie, D. R., Mullens, E., Alderson, L., Glidden, A., Lewis, N. K., Wakeford, H. R., … Matt Mountain, C. (2025). JWST-TST DREAMS: A Precise Water Abundance for Hot Jupiter WASP-17b from the NIRISS SOSS Transmission Spectrum. The Astronomical Journal, 169(2), 86. doi:10.3847/1538-3881/ad9688

Dynamics of Small, Constant-size Particles in a Protoplanetary Disk with an Embedded Protoplanet

Price, E. M., Van Clepper, E., & Ciesla, F. J. (2025). Dynamics of Small, Constant-size Particles in a Protoplanetary Disk with an Embedded Protoplanet. The Astrophysical Journal, 979(1), 37. doi:10.3847/1538-4357/ad9f35