Published June 23, 2010 | Version v1
Journal article

Nanoscopium: a Scanning Hard X-ray Nanoprobe Beamline at Synchrotron Soleil

  • 1. Synchrotron Soleil, L'Orme des Merisiers, Saint-Aubin-BP 48, 91192 GIF-sur-YVETTE CEDEX (France)

Description

Nanoscopium is the single scanning hard X-ray nano-probe beamline planned at SOLEIL. This ∼155 m long beamline will fully exploit the high brilliance and coherence characteristics of the X-ray beam both for diffraction limited focusing and for contrast formation. It will offer the most advanced imaging techniques in multimodal mode and will be a research tool for a wide user community working in the fields of earth-, environmental-, and life-sciences. The different μ-μnano-probe techniques offered by the beamline will permit elemental mapping at trace (ppm) levels (scanning XRF), speciation mapping (XANES), phase gradient mapping (scanning differential phase contrast), and density-contrast based imaging of internal structures (coherent diffraction imaging) in the 30 nm to 1 μm spatial resolution range, also in ''in situ conditions''. Nanoscopium will cover the 5-20 keV energy range. The stability of the nanobeam will be ensured by horizontally reflecting beamline optics (a sagitally and a tangentially pre-focusing mirror, horizontally reflecting monochromators) in front of the overfilled secondary source. Trade-off between high energy resolution (ΔE/E∼10-4) and high flux (1011 ph/s with ΔE/E∼10-2) will be achieved by two interchangeable monochromators (a double crystal and a double multilayer one). KB mirror and FZP lenses will be used as focusing devices. The beamline is in the design and construction phase. It is foreseen to be open for users at the beginning of 2013.

Additional details

Identifiers

Publishing Information

Journal Title
AIP Conference Proceedings
Journal Volume
1234
Journal Issue
1
Journal Page Range
p. 395-398
ISSN
0094-243X
CODEN
APCPCS

Conference

Title
10. international conference on radiation instrumentation
Acronym
SRI 2009
Dates
27 Sep - 2 Oct 2009
Place
Melbourne (Australia)

Optional Information

Notes
(c) 2010 American Institute of Physics