Coherent X-ray diffraction imaging is a rapidly advancing form of lensless microscopy. The phase information of the diffraction pattern is embedded in a sufficiently sampled coherent diffraction pattern. Using advanced computational methods, this diffraction pattern can be inverted to produce an image of a sample with diffraction-limited resolution. It is attractive to use high-power coherent X-ray beams produced by future X-ray free-electron lasers for imaging nanoscale condensed matter, materials and biological samples. Here, the scientific case, requirements and the possible realisation of the coherent X-ray diffraction imaging beamlines at the European XFEL Facility are presented
A proposed Energy Recovery Linac (ERL) x-ray source at Cornell would be a 5-7 GeV synchrotron facili...
Coherent diffractive imaging, also called lenses imaging methods, are now a standard tool for Xray i...
The routine atomic resolution structure determination of single particles is expected to have profou...
We present here an overview of Coherent X-ray Diffraction Imaging (CXDI) with its application to nan...
The newly emerging technology of X-ray free-electron lasers (XFELs) has the potential to revolutioni...
Coherent X-ray diffractive imaging (CXDI) is a new imaging technique that offers the potential to im...
The ultrafast pulses from X-ray free-electron lasers will enable imaging of non-periodic objects at ...
We describe femtosecond X-ray diffraction data sets of viruses and nanoparticles collected at the Li...
X-ray free-electron lasers produce pulses of coherent X-rays that are up to nine orders of magnitude...
Coherent diffractive imaging (CDI) has become a very popular technique over the past two decades. CD...
We describe femtosecond X−ray diffraction data sets of viruses and nanoparticles collected at the Li...
The high degree of spatial coherence and extreme pulse energies available at x-ray free electron las...
Progress in nanotechnology and biotechnology are propelled by our ability to manipulate and resolve ...
Coherent X-ray diffraction microscopy is a method of imaging non-periodic isolated objects at resolu...
Intense femtosecond x-ray pulses from free-electron laser sources allow the imaging of individual pa...
A proposed Energy Recovery Linac (ERL) x-ray source at Cornell would be a 5-7 GeV synchrotron facili...
Coherent diffractive imaging, also called lenses imaging methods, are now a standard tool for Xray i...
The routine atomic resolution structure determination of single particles is expected to have profou...
We present here an overview of Coherent X-ray Diffraction Imaging (CXDI) with its application to nan...
The newly emerging technology of X-ray free-electron lasers (XFELs) has the potential to revolutioni...
Coherent X-ray diffractive imaging (CXDI) is a new imaging technique that offers the potential to im...
The ultrafast pulses from X-ray free-electron lasers will enable imaging of non-periodic objects at ...
We describe femtosecond X-ray diffraction data sets of viruses and nanoparticles collected at the Li...
X-ray free-electron lasers produce pulses of coherent X-rays that are up to nine orders of magnitude...
Coherent diffractive imaging (CDI) has become a very popular technique over the past two decades. CD...
We describe femtosecond X−ray diffraction data sets of viruses and nanoparticles collected at the Li...
The high degree of spatial coherence and extreme pulse energies available at x-ray free electron las...
Progress in nanotechnology and biotechnology are propelled by our ability to manipulate and resolve ...
Coherent X-ray diffraction microscopy is a method of imaging non-periodic isolated objects at resolu...
Intense femtosecond x-ray pulses from free-electron laser sources allow the imaging of individual pa...
A proposed Energy Recovery Linac (ERL) x-ray source at Cornell would be a 5-7 GeV synchrotron facili...
Coherent diffractive imaging, also called lenses imaging methods, are now a standard tool for Xray i...
The routine atomic resolution structure determination of single particles is expected to have profou...