Open Access
Open access
volume 28 issue 1 pages 333-349

ROBL-II at ESRF: a synchrotron toolbox for actinide research

Juergen Claussner 3
Joerg Exner 1, 2
Manuel Feig 1, 4
Stefan Findeisen 3
C. Hennig 1, 2
Damien Naudet 1, 2
Damien Prieur 1, 2
Andre Rossberg 1, 2
Moritz Schmidt 2
Canrong Qiu 2
Patrick Colomp 5
Cédric Cohen 5
Cedric Cohen 5
Eric Dettona 5
Thorsten Stumpf 2
Publication typeJournal Article
Publication date2021-01-01
scimago Q1
wos Q2
SJR1.029
CiteScore5.4
Impact factor3.0
ISSN09090495, 16005775
Instrumentation
Radiation
Nuclear and High Energy Physics
Abstract

ROBL-II provides four different experimental stations to investigate actinide and other alpha- and beta-emitting radionuclides at the new EBS storage ring of ESRF within an energy range of 3 to 35 keV. The XAFS station consists of a highly automatized, high sample throughput installation in a glovebox, to measure EXAFS and conventional XANES of samples routinely at temperatures down to 10 K, and with a detection limit in the sub-p.p.m. range. The XES station with its five bent-crystal analyzer, Johann-type setup with Rowland circles of 1.0 and 0.5 m radii provides high-energy resolution fluorescence detection (HERFD) for XANES, XES, and RIXS measurements, covering both actinide L and M edges together with other elements accessible in the 3 to 20 keV energy range. The six-circle heavy duty goniometer of XRD-1 is equipped for both high-resolution powder diffraction as well as surface-sensitive CTR and RAXR techniques. Single crystal diffraction, powder diffraction with high temporal resolution, as well as X-ray tomography experiments can be performed at a Pilatus 2M detector stage (XRD-2). Elaborate radioprotection features enable a safe and easy exchange of samples between the four different stations to allow the combination of several methods for an unprecedented level of information on radioactive samples for both fundamental and applied actinide and environmental research.

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Scheinost A. C. et al. ROBL-II at ESRF: a synchrotron toolbox for actinide research // Journal of Synchrotron Radiation. 2021. Vol. 28. No. 1. pp. 333-349.
GOST all authors (up to 50) Copy
Scheinost A. C., Claussner J., Exner J., Feig M., Findeisen S., Hennig C., Kvashnina K., Naudet D., Prieur D., Rossberg A., Schmidt M., Qiu C., Colomp P., Cohen C., Cohen C., Dettona E., Москвин Е., Stumpf T. ROBL-II at ESRF: a synchrotron toolbox for actinide research // Journal of Synchrotron Radiation. 2021. Vol. 28. No. 1. pp. 333-349.
RIS |
Cite this
RIS Copy
TY - JOUR
DO - 10.1107/s1600577520014265
UR - https://doi.org/10.1107/s1600577520014265
TI - ROBL-II at ESRF: a synchrotron toolbox for actinide research
T2 - Journal of Synchrotron Radiation
AU - Scheinost, Andreas C.
AU - Claussner, Juergen
AU - Exner, Joerg
AU - Feig, Manuel
AU - Findeisen, Stefan
AU - Hennig, C.
AU - Kvashnina, Kristina
AU - Naudet, Damien
AU - Prieur, Damien
AU - Rossberg, Andre
AU - Schmidt, Moritz
AU - Qiu, Canrong
AU - Colomp, Patrick
AU - Cohen, Cédric
AU - Cohen, Cedric
AU - Dettona, Eric
AU - Москвин, Е.В.
AU - Stumpf, Thorsten
PY - 2021
DA - 2021/01/01
PB - Wiley
SP - 333-349
IS - 1
VL - 28
PMID - 33399586
SN - 0909-0495
SN - 1600-5775
ER -
BibTex |
Cite this
BibTex (up to 50 authors) Copy
@article{2021_Scheinost,
author = {Andreas C. Scheinost and Juergen Claussner and Joerg Exner and Manuel Feig and Stefan Findeisen and C. Hennig and Kristina Kvashnina and Damien Naudet and Damien Prieur and Andre Rossberg and Moritz Schmidt and Canrong Qiu and Patrick Colomp and Cédric Cohen and Cedric Cohen and Eric Dettona and Е.В. Москвин and Thorsten Stumpf},
title = {ROBL-II at ESRF: a synchrotron toolbox for actinide research},
journal = {Journal of Synchrotron Radiation},
year = {2021},
volume = {28},
publisher = {Wiley},
month = {jan},
url = {https://doi.org/10.1107/s1600577520014265},
number = {1},
pages = {333--349},
doi = {10.1107/s1600577520014265}
}
MLA
Cite this
MLA Copy
Scheinost, Andreas C., et al. “ROBL-II at ESRF: a synchrotron toolbox for actinide research.” Journal of Synchrotron Radiation, vol. 28, no. 1, Jan. 2021, pp. 333-349. https://doi.org/10.1107/s1600577520014265.