Coherent imaging at the Diamond beamline I13

The Diamond beamline I13 for imaging and coherence applications is dedicated to hard X‐ray imaging on the micro and nano‐lengthscale. Two independent stations will be operated in a separate building at a distance of 250 m from the source. The imaging branch will perform in‐line phase contrast imagin...

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Published in:Physica status solidi. A, Applications and materials science Vol. 208; no. 11; pp. 2522 - 2525
Main Authors: Rau, Christoph, Wagner, Ulrich, Pešić, Zoran, De Fanis, Alberto
Format: Journal Article
Language:English
Published: Berlin WILEY-VCH Verlag 01.11.2011
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ISSN:1862-6300, 1862-6319
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Abstract The Diamond beamline I13 for imaging and coherence applications is dedicated to hard X‐ray imaging on the micro and nano‐lengthscale. Two independent stations will be operated in a separate building at a distance of 250 m from the source. The imaging branch will perform in‐line phase contrast imaging and tomography over a large field of view in the 6–35 keV energy range. In addition it will be possible to switch to full‐field microscopy with 50 nm spatial resolution. Other microscopies will be developed according to the scientific needs. Resolution beyond the limitations given by the detector and X‐ray optics will be achieved on the ‘coherence’ branch. Techniques working in the far field such as Coherent X‐Ray Diffraction and other Coherent Diffraction Imaging techniques such as ptychography will be implemented. Typical applications cover different fields such as bio‐medicine, materials science, geo‐ and astrophysics or even cultural heritage. The beamline hosts a number of innovative features such as the so‐called ‘mini‐beta’ layout for electron optics in the storage ring or new concepts for beamline instrumentation. The stations will be operational in 2011.
AbstractList The Diamond beamline I13 for imaging and coherence applications is dedicated to hard X‐ray imaging on the micro and nano‐lengthscale. Two independent stations will be operated in a separate building at a distance of 250 m from the source. The imaging branch will perform in‐line phase contrast imaging and tomography over a large field of view in the 6–35 keV energy range. In addition it will be possible to switch to full‐field microscopy with 50 nm spatial resolution. Other microscopies will be developed according to the scientific needs. Resolution beyond the limitations given by the detector and X‐ray optics will be achieved on the ‘coherence’ branch. Techniques working in the far field such as Coherent X‐Ray Diffraction and other Coherent Diffraction Imaging techniques such as ptychography will be implemented. Typical applications cover different fields such as bio‐medicine, materials science, geo‐ and astrophysics or even cultural heritage. The beamline hosts a number of innovative features such as the so‐called ‘mini‐beta’ layout for electron optics in the storage ring or new concepts for beamline instrumentation. The stations will be operational in 2011.
Author Wagner, Ulrich
Pešić, Zoran
De Fanis, Alberto
Rau, Christoph
Author_xml – sequence: 1
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  surname: Rau
  fullname: Rau, Christoph
  email: christoph.rau@diamond.ac.uk
  organization: Diamond Light Source Ltd., Chilton, Oxfordshire OX11 0DE, United Kingdom
– sequence: 2
  givenname: Ulrich
  surname: Wagner
  fullname: Wagner, Ulrich
  organization: Diamond Light Source Ltd., Chilton, Oxfordshire OX11 0DE, United Kingdom
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  givenname: Zoran
  surname: Pešić
  fullname: Pešić, Zoran
  organization: Diamond Light Source Ltd., Chilton, Oxfordshire OX11 0DE, United Kingdom
– sequence: 4
  givenname: Alberto
  surname: De Fanis
  fullname: De Fanis, Alberto
  organization: Diamond Light Source Ltd., Chilton, Oxfordshire OX11 0DE, United Kingdom
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Snippet The Diamond beamline I13 for imaging and coherence applications is dedicated to hard X‐ray imaging on the micro and nano‐lengthscale. Two independent stations...
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SubjectTerms Astrophysics
Coherence
Cultural heritage
Cultural resources
Diamonds
Diffraction
Electron optics
Field of view
Geometrical optics
Imaging
Imaging techniques
in-line phase contrast
Instrumentation
Materials science
microscopy
Optics
Phase contrast
Spatial resolution
Stations
Storage rings (particle accelerators)
synchrotron
Title Coherent imaging at the Diamond beamline I13
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