The design and testing of the new MAD-STROBO data acquisition system are reported. The system realizes stroboscopic collection of high-resolution X-ray powder diffraction profiles under a dynamically applied electric field. It synchronizes an externally applied stimulus and detected X-ray photons. The feasibility of detecting sub-millidegree shifts of powder diffraction profiles with microsecond time resolution is demonstrated. MAD-STROBO may be applied for the investigation of various macroscopic and domain-related processes induced by an external perturbation, such as elasticity or piezoelectricity
The properties of synchrotron radiation relevant to single-crystal X-ray diffractometry are: its hig...
We demonstrate an apparatus for measuring time-dependent x-ray diffraction. X-ray pulses from a sync...
The intense X-ray pulses from free-electron lasers, of only femtoseconds duration, outrun most of th...
For high-resolution powder diffraction in material science, high photon energies are necessary, espe...
The increased brightness, tunability, low divergence and low emittance of X-ray beams available at s...
The high brightness, high intensity, and pulsed time-structure of synchrotron sources provide new op...
Time-resolved measurements of the macroscopic and microscopic strains in piezoelectric crystals were...
This article reports the development and characterization of a laboratory-based high-resolution X-ra...
An apparatus has been developed for measuring time-dependent x-ray diffraction. X-ray pulses from an...
Powder diffraction is one of the fundamental techniques for the investigation of materials. Its sens...
Continuous tuneable wavelength in the range [MATH], high brilliance and parallelity of the beam are ...
Powder diffraction covers a variety of applications ranging from high resolution structure determina...
This thesis relates to characterisation and calibration techniques for X-ray area detectors with app...
Recent developments have allowed x-ray diffraction techniques at synchrotron radiation facilities to...
Laboratory X-ray diffractometers are among the most widespread instruments in research laboratories ...
The properties of synchrotron radiation relevant to single-crystal X-ray diffractometry are: its hig...
We demonstrate an apparatus for measuring time-dependent x-ray diffraction. X-ray pulses from a sync...
The intense X-ray pulses from free-electron lasers, of only femtoseconds duration, outrun most of th...
For high-resolution powder diffraction in material science, high photon energies are necessary, espe...
The increased brightness, tunability, low divergence and low emittance of X-ray beams available at s...
The high brightness, high intensity, and pulsed time-structure of synchrotron sources provide new op...
Time-resolved measurements of the macroscopic and microscopic strains in piezoelectric crystals were...
This article reports the development and characterization of a laboratory-based high-resolution X-ra...
An apparatus has been developed for measuring time-dependent x-ray diffraction. X-ray pulses from an...
Powder diffraction is one of the fundamental techniques for the investigation of materials. Its sens...
Continuous tuneable wavelength in the range [MATH], high brilliance and parallelity of the beam are ...
Powder diffraction covers a variety of applications ranging from high resolution structure determina...
This thesis relates to characterisation and calibration techniques for X-ray area detectors with app...
Recent developments have allowed x-ray diffraction techniques at synchrotron radiation facilities to...
Laboratory X-ray diffractometers are among the most widespread instruments in research laboratories ...
The properties of synchrotron radiation relevant to single-crystal X-ray diffractometry are: its hig...
We demonstrate an apparatus for measuring time-dependent x-ray diffraction. X-ray pulses from a sync...
The intense X-ray pulses from free-electron lasers, of only femtoseconds duration, outrun most of th...