Presentation + Paper
8 September 2021 X-ray microscopy developments at Sirius-LNLS: first commissioning experiments at the Carnauba beamline
Author Affiliations +
Abstract
Synchrotron scanning X-ray microscopy has been established as a mature technique, bridging the gap between conventional optical microscopy and high-resolution electron microscopy and, notably, adding advantages like large penetration in bulky samples, dose reduction and spectroscopy. The CARNAÚBA beamline at the 4th generation synchrotron source Sirius-LNLS provides an X-ray nanoprobe for simultaneous multi-analytical and coherent X-ray imaging techniques, with spectroscopic capabilities in the 2.05 to 15 keV energy range. The sample is raster-scanned through the nanoprobe to provide two-dimensional maps, which can then be combined with a rotation for computed tomography. In this contribution, some relevant scientific cases for the Day-1 experiments will be presented, along with original instrument solutions for in situ, in operando, cryogenic and in vivo sample environments.
Conference Presentation
© (2021) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Hélio C. N. Tolentino, Renan R. Geraldes, Gabriel B. Z. L. Moreno, Artur C. Pinto, Cassiano S. N. C. Bueno, Leonardo M. Kofukuda, Anna P. S. Sotero, Antonio C. P. Neto, Francesco R. Lena, Willian H. Wilendorf, Giovanni L. Baraldi, Sergio A. L. Luiz, Carlos S. B. Dias, Carlos A. Pérez, Itamar T. Neckel, Douglas Galante, Veronica C Teixeira, and Dean Hesterberg "X-ray microscopy developments at Sirius-LNLS: first commissioning experiments at the Carnauba beamline", Proc. SPIE 11839, X-Ray Nanoimaging: Instruments and Methods V, 1183904 (8 September 2021); https://doi.org/10.1117/12.2596496
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KEYWORDS
Mirrors

Cryogenics

Crystals

Nanoprobes

Imaging spectroscopy

Luminescence

X-rays

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