Established x-ray diffraction methods allow for high-resolution structure determination of crystals, crystallized protein structures, or even single molecules. While these techniques rely on coherent scattering, incoherent processes like fluorescence emission—often the predominant scattering mechanism—are generally considered detrimental for imaging applications. Here, we show that intensity correlations of incoherently scattered x-ray radiation can be used to image the full 3D arrangement of the scattering atoms with significantly higher resolution compared to conventional coherent diffraction imaging and crystallography, including additional three-dimensional information in Fourier space for a single sample orientation. We present a numbe...
The routine atomic resolution structure determination of single particles is expected to have profou...
Thermal diffuse scattering of electrons through large angles by a simple low-index crystal projectio...
Compton scattering is generally neglected in diffraction experiments because the incoherent radiatio...
Established x-ray diffraction methods allow for high-resolution structure determination of crystals,...
The advent of accelerator-driven x-ray free-electron lasers has opened new avenues for high resoluti...
The advent of accelerator-driven x-ray free-electron lasers (FEL) has opened new avenues for high-re...
The advent of accelerator-driven free-electron lasers (FEL) has opened new avenues for high-resoluti...
Coherent X-ray diffraction microscopy is a method of imaging non-periodic isolated objects at resolu...
Imaging of the structure of single proteins or other biomolecules with atomic resolution would be en...
The short pulses of X-ray free-electron lasers can produce diffraction patterns with structural info...
Progress in nanotechnology and biotechnology are propelled by our ability to manipulate and resolve ...
X-ray free-electron lasers produce pulses of coherent X-rays that are up to nine orders of magnitude...
Intensity interferometry is a well known method in astronomy. Recently, a related method called inco...
Scattering experiments with femtosecond high-intensity free-electron laser pulses provide a new rout...
We present here an overview of Coherent X-ray Diffraction Imaging (CXDI) with its application to nan...
The routine atomic resolution structure determination of single particles is expected to have profou...
Thermal diffuse scattering of electrons through large angles by a simple low-index crystal projectio...
Compton scattering is generally neglected in diffraction experiments because the incoherent radiatio...
Established x-ray diffraction methods allow for high-resolution structure determination of crystals,...
The advent of accelerator-driven x-ray free-electron lasers has opened new avenues for high resoluti...
The advent of accelerator-driven x-ray free-electron lasers (FEL) has opened new avenues for high-re...
The advent of accelerator-driven free-electron lasers (FEL) has opened new avenues for high-resoluti...
Coherent X-ray diffraction microscopy is a method of imaging non-periodic isolated objects at resolu...
Imaging of the structure of single proteins or other biomolecules with atomic resolution would be en...
The short pulses of X-ray free-electron lasers can produce diffraction patterns with structural info...
Progress in nanotechnology and biotechnology are propelled by our ability to manipulate and resolve ...
X-ray free-electron lasers produce pulses of coherent X-rays that are up to nine orders of magnitude...
Intensity interferometry is a well known method in astronomy. Recently, a related method called inco...
Scattering experiments with femtosecond high-intensity free-electron laser pulses provide a new rout...
We present here an overview of Coherent X-ray Diffraction Imaging (CXDI) with its application to nan...
The routine atomic resolution structure determination of single particles is expected to have profou...
Thermal diffuse scattering of electrons through large angles by a simple low-index crystal projectio...
Compton scattering is generally neglected in diffraction experiments because the incoherent radiatio...