We report the performance of an X-ray phase contrast microscope for laboratory sources with 300 nm spatial resolution. The microscope is based on a commercial X-ray microfocus source equipped with a planar X-ray waveguide able to produce a sub-micrometer x-ray beam in one dimension. Phase contrast images of representative samples are reported. The achieved contrast and resolution is discussed for different configurations. The proposed approach could represent a simple, inexpensive, solution for sub-micrometer resolution imaging with small laboratory setups
X-ray phase-contrast imaging has recently led to a revolution in resolving power and tissue contrast...
BACKGROUND: X-ray micro-tomography (μCT) is a powerful non-destructive 3D imaging method applied in ...
X-ray phase contrast imaging is a powerful analysis technique for materials science and biomedicine....
We report the performance of an X-ray phase contrast microscope for laboratory sources with 300 nm s...
Experimental data with unprecedented submicrometre resolution obtained in a phase-contrast radiograp...
X‐ray phase contrast imaging is a powerful technique that allows detection of changes in the phase o...
X-ray phase contrast imaging is nowadays an established technique used to investigate the inner stru...
X-ray microscopy and micro-tomography (μCT) are valuable non-destructive examination methods in many...
X-ray ptychography has revolutionized nanoscale phase contrast imaging at large-scale synchrotron so...
X-ray ptychography has revolutionized nanoscale phase contrast imaging at large-scale synchrotron so...
We report on the development of a low-energy x-ray phase-based microscope using intensity-modulation...
We present an alternative laboratory implementation of x-ray phase-contrast tomography through a bea...
Edge illumination is an X-ray phase-contrast imaging technique capable of quantitative retrieval of ...
This project looks at the design of an in-line X-ray phase contrast imaging system, based around the...
We present an experimental setup for monochromatic propagation-based x-ray phase-contrast imaging ba...
X-ray phase-contrast imaging has recently led to a revolution in resolving power and tissue contrast...
BACKGROUND: X-ray micro-tomography (μCT) is a powerful non-destructive 3D imaging method applied in ...
X-ray phase contrast imaging is a powerful analysis technique for materials science and biomedicine....
We report the performance of an X-ray phase contrast microscope for laboratory sources with 300 nm s...
Experimental data with unprecedented submicrometre resolution obtained in a phase-contrast radiograp...
X‐ray phase contrast imaging is a powerful technique that allows detection of changes in the phase o...
X-ray phase contrast imaging is nowadays an established technique used to investigate the inner stru...
X-ray microscopy and micro-tomography (μCT) are valuable non-destructive examination methods in many...
X-ray ptychography has revolutionized nanoscale phase contrast imaging at large-scale synchrotron so...
X-ray ptychography has revolutionized nanoscale phase contrast imaging at large-scale synchrotron so...
We report on the development of a low-energy x-ray phase-based microscope using intensity-modulation...
We present an alternative laboratory implementation of x-ray phase-contrast tomography through a bea...
Edge illumination is an X-ray phase-contrast imaging technique capable of quantitative retrieval of ...
This project looks at the design of an in-line X-ray phase contrast imaging system, based around the...
We present an experimental setup for monochromatic propagation-based x-ray phase-contrast imaging ba...
X-ray phase-contrast imaging has recently led to a revolution in resolving power and tissue contrast...
BACKGROUND: X-ray micro-tomography (μCT) is a powerful non-destructive 3D imaging method applied in ...
X-ray phase contrast imaging is a powerful analysis technique for materials science and biomedicine....