NSLS II XFM Beamline

Laboratory experiments with an Mn-rich paddy soil explore the impacts of Mn on biogeochemical processes controlling As solubility as shown through mapping

APS 13-IDE GSECARS, Microprobe

13 IDE x-ray microprobe experiment table for microfocused XRF, XAFS, and XRD analysis

APS, Scanning Electron Microscope Image GSECARS, SEM

Scanning electron photomicrograph of fragments of CR2 chondrite LAP 02342.  From Lanzirotti, et al. 2024.

NSLS-II FIS beamline

Synchrotron infrared data shows that the Earth’s mantle can store 400 to 650 km below the Earth’s surface.

The mission of SEES (Synchrotron Earth and Environmental Science) is to advance research and education in synchrotron-based Earth and environmental science to better understand our planet from the atmosphere to the core, to address societally relevant problems, and to train the next generation of scientists. SEES is responsible for the management, operation, and development of multiple user facilities hosted at four DOE-operated US synchrotrons: Advanced Photon Source (APS), Advanced Light Source (ALS), National Synchrotron Light Source II (NSLS-II), and Stanford Synchrotron Radiation Lightsource (SSRL).

Facility Status and Upcoming Proposal Deadlines

Events Calendar

Recent Publications

Fatemeh Izaditame, Joshua J. LeMonte, Matthew G. Siebecker, Xuan Yu, Matthew Fischel, Ryan Tappero, Donald L. Sparks, Sea−level rise and arsenic−rich soils: A toxic relationship, Journal of Hazardous Materials, Volume 472, 2024, 134528, ISSN 0304-3894

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Ashley, A. W., Mookherjee, M., Xu, M., Yu, T., Manthilake, G., & Wang, Y. (2024). Viscosity measurements at high pressures: A critical appraisal of corrections to Stokes’ Law. Journal of Geophysical Research: Solid Earth, 129, e2023JB028489.

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Kunz, M., Armstrong, K., Barnard, H. et al. In situ X-ray and IR probes relevant to Earth science at the Advanced Light Source at Lawrence Berkeley Laboratory. Phys Chem Minerals 51, 15 (2024).

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Khandarkhaeva, S., Fedotenko, T., Aslandukova, A. et al. Extending carbon chemistry at high-pressure by synthesis of CaC2 and Ca3C7 with deprotonated polyacene- and para-poly(indenoindene)-like nanoribbons. Nat Commun 15, 2855 (2024).

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Matthew Ricks, Arianna E. Gleason, Francesca Miozzi, Hong Yang, Stella Chariton, Vitali B. Prakapenka, Stanislav V. Sinogeikin, Richard L. Sandberg, Wendy L. Mao, Silvia Pandolfi, “Phase transition kinetics revealed by in situ x-ray diffraction in laser-heated dynamic diamond anvil cells,” Phys. Rev. Research 6 (1), 013316 (2024). DOI: 10.1103/PhysRevResearch.6.013316

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Musfeldt, J. L., Sobhit Singh, Shiyu Fan, Yanhong Gu, Xianghan Xu, S-W. Cheong, Z. Liu, David Vanderbilt, and Karin M. Rabe. “Structural phase purification of bulk HfO2: Y through pressure cycling.” Proceedings of the National Academy of Sciences 121, no. 5 (2024): e2312571121.

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Science Highlights

Workshops