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
High P-T Single-Crystal Elasticity of Zircon by Brillouin Spectroscopy

High P-T Single-Crystal Elasticity of Zircon by Brillouin Spectroscopy

by Christofanis Skordas | Jan 9, 2025 | Publications, Science Highlights

Arlacee Luu, Wen-Yi Zhou, Xin Zhong, Ming Hao, Przemyslaw Dera, Jin S. Zhang; High P–T Single-Crystal Elasticity of Zircon by Brillouin Spectroscopy. American Mineralogist 2025
Observation of Exceptional Stability in a Nonlinear Optical Crystal Under Extreme Conditions

Observation of Exceptional Stability in a Nonlinear Optical Crystal Under Extreme Conditions

by Christofanis Skordas | Jan 9, 2025 | Publications

Y. Wang, V. T. Barone, S. V. Khare, A. Yang, D. Zhang, Y. J. Ryu, S. Menon, W. Zhou, P. S. Kanthan, M. Kozel, Observation of Exceptional Stability in a Nonlinear Optical Crystal Under Extreme Conditions. Adv. Funct. Mater. 2025, 2412747....
Graphene Activated Magnesium Diboride for Moderate Pressure and Temperature Hydrogenation to Magnesium Borohydride

Graphene Activated Magnesium Diboride for Moderate Pressure and Temperature Hydrogenation to Magnesium Borohydride

by Christofanis Skordas | Jan 7, 2025 | Publications

Godwin Severa, Lei Wang, Stephen Kim, Noemi Leick, Colleen Kelly, Cody Sugai, Jonathan L. Snider, Andrew G. Norman, Przemyslaw Dera, Isabella Kotsol, Thomas Gennett, Vitalie Stavila, and Craig M. Jensen, Graphene Activated Magnesium Diboride for Moderate Pressure and...
New high-pressure Fe-Ti oxide minerals in the Shergotty Martian meteorite: Feiite, Fe2+2(Fe2+Ti4+)O5, liuite, FeTiO3, and tschaunerite, (Fe2+)(Fe2+Ti4+)O4

New high-pressure Fe-Ti oxide minerals in the Shergotty Martian meteorite: Feiite, Fe2+2(Fe2+Ti4+)O5, liuite, FeTiO3, and tschaunerite, (Fe2+)(Fe2+Ti4+)O4

by Christofanis Skordas | Dec 29, 2024 | Publications

Ma, Chi, Oliver Tschauner, John R. Beckett, and Vitali B. Prakapenka. “New high‐pressure Fe‐Ti oxide minerals in the Shergotty Martian meteorite: Feiite, Fe2+ 2 (Fe2+ Ti4+) O5, liuite, FeTiO3, and tschaunerite,(Fe2+)(Fe2+ Ti4+) O4.” Meteoritics & Planetary...
Synthesis and Stability of High-Energy-Density Niobium Nitrides under High-Pressure Conditions

Synthesis and Stability of High-Energy-Density Niobium Nitrides under High-Pressure Conditions

by Christofanis Skordas | Dec 21, 2024 | Publications

Huawei Chen, Maxim Bykov, Iskander G. Batyrev, Lukas Brüning, Elena Bykova, Mohammad F. Mahmood, Stella Chariton, Vitali B. Prakapenka, Timofey Fedotenko, Konstantin Glazyrin, Mohamed Mezouar, Gaston Garbarino, Andrew Steele, and Alexander F. Goncharov, Synthesis and...
Production of highly silicic 3.9 to 4.27 Ga crust on the Moon

Production of highly silicic 3.9 to 4.27 Ga crust on the Moon

by Christofanis Skordas | Dec 17, 2024 | Publications, Science Highlights

Trail, D., N. D. Tailby, M. R. Ackerson, M. Barboni, M. Newville, A. Lanzirotti, and K. D. McKeegan. “Production of highly silicic 3.9 to 4.27 Ga crust on the Moon.” Geochemical Perspectives Letters 33, no. 33 (2024): 27-31.
« 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