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  4. TOMCAT: A beamline for TOmographic Microscopy and Coherent rAdiology experimenTs
 
conference paper

TOMCAT: A beamline for TOmographic Microscopy and Coherent rAdiology experimenTs

Stampanoni, M.
•
Groso, A.  
•
Isenegger, A.
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January 19, 2007
AIP Conference Proceedings
9th International Conference on Synchrotron Radiation Instrumentation

Synchrotron‐based X‐ray Tomographic Microscopy (SRXTM) is nowadays a powerful technique for non‐destructive, high‐resolution investigations of a broad kind of materials. High‐brilliance and high‐coherence third generation synchrotron radiation facilities allow micrometer and sub‐micrometer, quantitative, three‐dimensional imaging within very short time and extend the traditional absorption imaging technique to edge‐enhanced and phase‐sensitive measurements. At the Swiss Light Source, a new, tomography dedicated beamline called TOMCAT has been built recently. The new beamline get photons from a 2.9 T superbend with a critical energy of 11.1 keV. This makes energies above 20 keV easily accessible. To guarantee the best beam quality (stability and homogeneity), the number of optical elements has been kept to a minimum. A Double Crystal Multilayer Monochromator (DCMM) covers an energy range between 8 and 45 keV with a bandwidth of a few percent down to 10−4. The beamline can also be operated in white‐beam mode, providing the ideal conditions for real‐time coherent radiology.

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Type
conference paper
DOI
10.1063/1.2436193
Author(s)
Stampanoni, M.
Groso, A.  
Isenegger, A.
Mikuljan, G.
Chen, Q.
Meister, D.
Lange, M.
Betemps, R.
Henein, Simon  
Abela, R.
Date Issued

2007-01-19

Published in
AIP Conference Proceedings
Total of pages

4

Volume

879

Issue

Issue 1

Start page

848

End page

851

Subjects

X-ray imaging

•

synchrotron microtomography

•

coherent radiology

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
INSTANT-LAB  
Event nameEvent placeEvent date
9th International Conference on Synchrotron Radiation Instrumentation

Daegu, Korea

May 28-June 2, 2006

Available on Infoscience
November 14, 2023
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/202139
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