Powder diffraction patterns of standard reference material LaB6 (660a) have been used to determine the energy of a synchrotron beam across the range 7-12keV with typical uncertainties of 0.1eV. Diffraction peaks were recorded on X-ray image plates over
A method for single-shot, nondestructive characterization of broadband x-ray beams, based on energy-...
The Materials Science Beamline ID11 at the European Synchrotron Radiation Facility in Grenoble, Fran...
It is clear that high-resolution synchrotrons X-ray powder diffraction is a very powerful and conven...
We report synchrotron energy determinations using the powder diffraction patterns of Si (640b) and L...
Standard reference markers for accurate, reproducible synchrotron x-ray energies are obtained using ...
Powder diffraction covers a variety of applications ranging from highresolution structure determinat...
Continuous tuneable wavelength in the range [MATH], high brilliance and parallelity of the beam are ...
The design of a beam line for synchrotron radiation research is described. The 700 to 7000 eV energy...
X-ray powder diffraction measurements using synchrotron radiation are currently being carried out on...
Powder diffraction is one of the fundamental techniques for the investigation of materials. Its sens...
The instrumentation developed for polycrystalline diffractometry using the storage ring at the Stanf...
The peak profiles of standard reference materials have been investigated with energy-dispersive X-ra...
Powder X-ray diffraction techniques largely benefit from the superior beam quality provided by high-...
In this paper, we report a method of precise and fast absolute x-ray energy calibration over a wide ...
A method for single-shot, non-destructive characterisation of broadband X-ray beams, based on energy...
A method for single-shot, nondestructive characterization of broadband x-ray beams, based on energy-...
The Materials Science Beamline ID11 at the European Synchrotron Radiation Facility in Grenoble, Fran...
It is clear that high-resolution synchrotrons X-ray powder diffraction is a very powerful and conven...
We report synchrotron energy determinations using the powder diffraction patterns of Si (640b) and L...
Standard reference markers for accurate, reproducible synchrotron x-ray energies are obtained using ...
Powder diffraction covers a variety of applications ranging from highresolution structure determinat...
Continuous tuneable wavelength in the range [MATH], high brilliance and parallelity of the beam are ...
The design of a beam line for synchrotron radiation research is described. The 700 to 7000 eV energy...
X-ray powder diffraction measurements using synchrotron radiation are currently being carried out on...
Powder diffraction is one of the fundamental techniques for the investigation of materials. Its sens...
The instrumentation developed for polycrystalline diffractometry using the storage ring at the Stanf...
The peak profiles of standard reference materials have been investigated with energy-dispersive X-ra...
Powder X-ray diffraction techniques largely benefit from the superior beam quality provided by high-...
In this paper, we report a method of precise and fast absolute x-ray energy calibration over a wide ...
A method for single-shot, non-destructive characterisation of broadband X-ray beams, based on energy...
A method for single-shot, nondestructive characterization of broadband x-ray beams, based on energy-...
The Materials Science Beamline ID11 at the European Synchrotron Radiation Facility in Grenoble, Fran...
It is clear that high-resolution synchrotrons X-ray powder diffraction is a very powerful and conven...