You are here: Home Users and Science Experimental facilities X-ray imaging ID22 Micro-Fluorescence, Imaging and Diffraction Applications Micro-Imaging & Micro-Tomography Publications on Micro-Imaging and Micro-Tomography at ID22

Publications on Micro-Imaging and Micro-Tomography at ID22

last modified 15-10-2008 11:07

 

On tomography applications

O. Paris, H. Peterlik, D. Loidl, C. Rau, and T. Weitkamp, Microcracks in carbon/carbon composites: A microtomography investigation using synchrotron radiation, Mat. Res. Soc. Symp. Proc. 678 (2001) EE3.8.1-EE3.8.6.

C. Antoine, P. Nygård, R. Holmstad, Ø. W. Gregersen, T. Weitkamp, C. Rau, O. Solheim, and P. J. Houen, Binarisation of 3d images of paper obtained by phase-contrast X-ray microtomography, in Proceedings of the Final Workshop of COST Action E11: Characterization Methods for Fibres and Paper, Hanasaari, Espoo, Finland, 2001.

C. E. Krill, K. Döbrich, D. Michels, A. Michels, C. Rau, T. Weitkamp, A. Snigirev, and R. Birringer, Tomographic characterization of grain-size correlations in polycrystalline Al-Sn, In Bonse [1].

B. Salbu, T. Krekling, O. C. Lind, D. H. Oughton, M. Drakopoulos, A. Simionovici, I. Snigireva, A. Snigirev, T. Weitkamp, F. Adams, K. Janssens, and V. A. Kashparov, High energy X-ray microscopy for characterisation of fuel particles, Nucl. Instr. Meth. A 467-468 (2001) 1249-1252.

On fast imaging applications

R. H. Mathiesen, L. Arnberg, K. Ramsøskar, T. Weitkamp, C. Rau, and A. Snigirev, In-situ X-ray imaging of aluminium alloy solidification processes, submitted to Metallurgical and Material Transactions A.

R. H. Mathiesen, L. Arnberg, F. Mo, T. Weitkamp, and A. Snigirev, Time-resolved X-ray imaging of dendritic growth in binary alloys, Phys. Rev. Lett. 83 (1999) 5062-5065.

On the instrument

T. Weitkamp, C. Raven, and A. Snigirev, An imaging and microtomography facility at the ESRF beamline ID 22, in Developments In X-ray Tomography II, edited by U. Bonse, volume 3772 of Proceedings SPIE, pages 311-317, SPIE, 1999. 

C. Raven, Microimaging and Tomography with High Energy Coherent Synchrotron X-Rays, Shaker Verlag, Aachen, 1999.

A. Koch, C. Raven, P. Spanne, and A. Snigirev, X-ray imaging with submicrometer resolution employing transparent luminescent screens, J. Opt. Soc. Am. 15 (1998) 1940-1951.

On the method

T. Weitkamp, C. Rau, A. A. Snigirev, B. Benner, T. F. Günzler, M. Kuhlmann, and C. G. Schroer, In-line phase contrast in synchrotron-radiation microradiography and tomography, In Bonse [1], to be published.

P. Spanne, C. Raven, I. Snigireva, and A. Snigirev, In-line holography and phase-contrast microtomography with high-energy X rays, Phys. Med. Biol. 44 (1999) 741-749.

C. Raven, Microimaging and Tomography with High Energy Coherent Synchrotron X-Rays, Shaker Verlag, Aachen, 1999.

C. Raven, A. Snigirev, A. Koch, I. Snigireva, and V. Kohn, X-ray tomography with micrometer spatial resolution, in Developments in X-ray Tomography, edited by U. Bonse, volume 3149 of SPIE Proceedings, pages 140-148, SPIE, 1997.

P. Cloetens, R. Barrett, J. Baruchel, J.-P. Guigay, and M. Schlenker, Phase objects in synchrotron radiation hard x-ray imaging, J. Phys. D 29 (1996) 133-146.

A. Snigirev, I. Snigireva, V. Kohn, S. Kuznetsov, and I. Schelokov, On the possibilities of x-ray phase contrast microimaging by coherent high-energy synchrotron radiation, Rev. Sci. Instr. 66 (1995) 5486-5492.

On the combination with other methods

A. Simionovici, M. Chukalina, F. Günzler, C. Schroer, A. Snigirev, I. Snigireva, J. Tümmler, and T. Weitkamp, X-ray microtome by fluorescence tomography, Nucl. Instr. Meth. A 467-468 (2001) 889-892. 

B. Salbu, T. Krekling, O. C. Lind, D. H. Oughton, M. Drakopoulos, A. Simionovici, I. Snigireva, A. Snigirev, T. Weitkamp, F. Adams, K. Janssens, and V. A. Kashparov, High energy X-ray microscopy for characterisation of fuel particles, Nucl. Instr. Meth. A 467-468 (2001) 1249-1252.

T. Weitkamp, C. Rau, A. Simionovici, M. Drakopoulos, A. Snigirev, C. Schroer, T. F. Günzler, J. Tümmler, and B. Lengeler, X-ray microbeams, full-field imaging and tomography: combining methods with micrometer resolution, in New Developments & Applications of Neutrons and Synchrotron Radiation, Proceedings Hercules X Euroconference, Grenoble, 2000.

On hard X-ray microscopy using lenses

T. Weitkamp, C. Rau, A. A. Snigirev, B. Benner, T. F. Günzler, M. Kuhlmann, and C. G. Schroer, In-line phase contrast in synchrotron-radiation microradiography and tomography, In Bonse [1], to be published.

C. G. Schroer, B. Lengeler, B. Benner, T. F. Günzler, M. Kuhlmann, B. Lengeler, C. Rau, T. Weitkamp, A. Snigirev, and I. Snigireva, Magnified hard X-ray microtomography: Toward tomography with sub-micron resolution, In Bonse [1], to be published.

C. Rau, T. Weitkamp, A. Snigirev, C. G. Schroer, J. Tümmler, and B. Lengeler, Recent developments in hard X-ray tomography, Nucl. Instr. Meth. A 467-468 (2001) 929-931. 

T. Weitkamp, O. Chubar, M. Drakopoulos, A. Souvorov, I. Snigireva, A. Snigirev, F. Günzler, C. Schroer, and B. Lengeler, Refractive lenses as a beam diagnostics tool for high-energy synchrotron radiation, Nucl. Instr. Meth. A 467-468 (2001) 248-251.

W. Leitenberger, T. Weitkamp, M. Drakopoulos, I. Snigireva, and A. Snigirev, Microscopic imaging and holography with hard X rays using Fresnel zone plates, Opt. Comm. 180 (2000) 233-238.

Reference:

[1] U. Bonse, editor, Developments In X-ray Tomography III, Proceedings SPIE, SPIE, 2001, to be published.  


European Synchrotron Radiation Facility