The focusing and coherence properties of the NanoMAX Kirkpatrick–Baez mirror system at the fourth-generation MAX IV synchrotron in Lund have been characterized. The direct measurement of nano-focused X-ray beams is possible by scanning of an X-ray waveguide, serving basically as an ultra-thin slit. In quasi-coherent operation, beam sizes of down to 56 nm (FWHM, horizontal direction) can be achieved. Comparing measured Airy-like fringe patterns with simulations, the degree of coherence |μ| has been quantified as a function of the secondary source aperture (SSA); the coherence is larger than 50% for SSA sizes below 11 µm at hard X-ray energies of 14 keV. For an SSA size of 5 µm, the degree of coherence has been determined to be 87%
Third génération synchrotron sources allow imaging at high energy with sub-micron resolution. The re...
In our recent x-ray photon correlation spectroscopy (speckle) experiments at NSLS, one of the challe...
The advent of nanofocused X-ray beams has allowed the study of single nanocrystals and complete nano...
The focusing and coherence properties of the NanoMAX Kirkpatrick–Baez mirror system at the fourth-ge...
We have used a combined optical system of a high gain elliptic Kirkpatrick-Baez mirror system (KB) a...
In the past decade Kirkpatrick-Baez (KB) mirrors have been established as powerful focusing systems ...
The degree of spatial coherence, as basic characteristics of the radiation, becomes an important gui...
The NanoMAX hard X-ray nanoprobe is the first beamline to take full advantage of the diffraction-lim...
The diffraction endstation of the NanoMAX beamline is designed to provide high-flux coherent X-ray n...
X-ray focusing using Kirkpatrick-Baez (KB) mirrors is promising owing to their capability of highly ...
A compound optical system for coherent focusing and imaging at the nanoscale is reported, realised b...
We describe the design of the NanoMAX beamline to be built among the first phase beamlines of the MA...
X-ray scanning microscopy relies on intensive nanobeams generated by imaginga highly brilliant synch...
Realizing the experimental potential of high-brightness, next generation synchrotron and free-electr...
NanoMAX is a hard x-ray nanoimaging beamline at the new Swedish synchrotron radiation source MAX IV ...
Third génération synchrotron sources allow imaging at high energy with sub-micron resolution. The re...
In our recent x-ray photon correlation spectroscopy (speckle) experiments at NSLS, one of the challe...
The advent of nanofocused X-ray beams has allowed the study of single nanocrystals and complete nano...
The focusing and coherence properties of the NanoMAX Kirkpatrick–Baez mirror system at the fourth-ge...
We have used a combined optical system of a high gain elliptic Kirkpatrick-Baez mirror system (KB) a...
In the past decade Kirkpatrick-Baez (KB) mirrors have been established as powerful focusing systems ...
The degree of spatial coherence, as basic characteristics of the radiation, becomes an important gui...
The NanoMAX hard X-ray nanoprobe is the first beamline to take full advantage of the diffraction-lim...
The diffraction endstation of the NanoMAX beamline is designed to provide high-flux coherent X-ray n...
X-ray focusing using Kirkpatrick-Baez (KB) mirrors is promising owing to their capability of highly ...
A compound optical system for coherent focusing and imaging at the nanoscale is reported, realised b...
We describe the design of the NanoMAX beamline to be built among the first phase beamlines of the MA...
X-ray scanning microscopy relies on intensive nanobeams generated by imaginga highly brilliant synch...
Realizing the experimental potential of high-brightness, next generation synchrotron and free-electr...
NanoMAX is a hard x-ray nanoimaging beamline at the new Swedish synchrotron radiation source MAX IV ...
Third génération synchrotron sources allow imaging at high energy with sub-micron resolution. The re...
In our recent x-ray photon correlation spectroscopy (speckle) experiments at NSLS, one of the challe...
The advent of nanofocused X-ray beams has allowed the study of single nanocrystals and complete nano...