sees-logo
  • Home
  • Getting Started
  • Applications and Techniques
    • Scientific Areas
    • Synchrotron Radiation
    • Scattering and Diffraction
    • X-ray Imaging
    • X-ray and Infrared Spectroscopy
  • Beamlines and Facilities
    • Advanced Light Source
    • Advanced Photon Source
    • Stanford Synchrotron Radiation Lightsource
    • National Synchrotron Lightsource II
  • Community Resources
    • Education, Outreach and Community
    • Data and Software
    • Training Materials
  • News and Media
    • Events Calendar
    • Science Highlights
    • News and Announcements
    • Outreach
    • Publications
  • Who We Are
    • Leadership
    • Staff
    • User Community
    • About Us
Phase transformation of ferric-iron-rich silicate in Earth’s mid-mantle

Phase transformation of ferric-iron-rich silicate in Earth’s mid-mantle

by Charlie Smith | Mar 1, 2025 | Publications, Science Highlights

Lv, Mingda, Shengcai Zhu, Jiachao Liu, Yi Hu, Feng Zhu, Xiaojing Lai, Dongzhou Zhang et al. “Phase transformation of ferric-iron-rich silicate in Earth’s mid-mantle.” American Mineralogist 110, no. 3 (2025): 414-421.
Carbonation of MgO Single Crystals: Implications for Direct Air Capture of CO2

Carbonation of MgO Single Crystals: Implications for Direct Air Capture of CO2

by Charlie Smith | Feb 10, 2025 | Publications, Science Highlights

Peng Yang, Jacquelyn N. Bracco, Gabriela Camacho Meneses, Ke Yuan, Joanne E. Stubbs, Mavis D. Boamah, Matthew Brahlek, Michel Sassi, Peter J. Eng, Matthew G. Boebinger, Albina Borisevich, Anna K. Wanhala, Zheming Wang, Kevin M. Rosso, Andrew G. Stack, and Juliane...
Physical properties, internal structure, and the three-dimensional petrography of CI chondrites

Physical properties, internal structure, and the three-dimensional petrography of CI chondrites

by Charlie Smith | Feb 10, 2025 | Publications, Science Highlights

Friedrich, J.M., Riveros, E.M., Macke, R.J., Jaret, S.J., Rivers, M.L. and Ebel, D.S. (2025), Physical properties, internal structure, and the three-dimensional petrography of CI chondrites. Meteorit Planet Sci. https://doi.org/10.1111/maps.14320
Thermoelastic Properties of Iron‐Rich Ringwoodite and the Deep Mantle Aerotherm of Mars

Thermoelastic Properties of Iron‐Rich Ringwoodite and the Deep Mantle Aerotherm of Mars

by Charlie Smith | Feb 4, 2025 | Publications, Science Highlights

Wang, F., Bausch, H. J., Gardner, L. L.,Zhang, D., Armstrong, K., Bell, A. S., et al.(2025). Thermoelastic properties of iron‐rich ringwoodite and the deep mantleaerotherm of Mars. Geophysical ResearchLetters, 52,...
Numerical Investigation Into Mechanical Behavior ofMetastable Olivine During Phase Transformation: Implications for Deep‐Focus Earthquakes

Numerical Investigation Into Mechanical Behavior ofMetastable Olivine During Phase Transformation: Implications for Deep‐Focus Earthquakes

by Charlie Smith | Jan 31, 2025 | Publications, Science Highlights

Sindhusuta, S., Chi, S.‐W., Foster, C., Officer, T., & Wang, Y. (2025). Numerical investigation into mechanical behavior of metastable olivine during phase transformation: Implications for deep-focus earthquakes. Journal of Geophysical Research: Solid Earth, 130,...
Nonlinearity of the post-spinel transition and its expression in slabs and plumes worldwide

Nonlinearity of the post-spinel transition and its expression in slabs and plumes worldwide

by Charlie Smith | Jan 26, 2025 | Publications, Science Highlights

Dong, J., Fischer, R.A., Stixrude, L.P. et al. Nonlinearity of the post-spinel transition and its expression in slabs and plumes worldwide. Nat Commun 16, 1039 (2025). https://doi.org/10.1038/s41467-025-56231-z
« Older Entries
Next Entries »
SEES_Logo_sees_transparent

SEES Main Office
The University of Chicago
5734 S Ellis Avenue
Chicago, IL 60637

Quick Links


Apply for Beamtime

Ask a SEES Scientist


Contact Us


Job Opportunities

SEES Users Mailing List

Publication Acknowledgements

Facilities

Advanced Light Source
Advanced Photon Source
National Synchrotron Light Source II
Stanford Synchrotron Radiation Light Source

SEES is supported by the NSF Division of Earth Sciences (EAR) SEES: Synchrotron Earth and Environmental Science (EAR-2223273).

© 2025 SEES, Synchrotron Earth and Environmental Science