See how a four-bar linkage with plastic hinges achieves sub-micrometer x-ray grid positioning w
Two detector images are captured with the electron beam on the target and on a dump or substrate, then subtracted to remove secondary radiation artifacts.
Switching the electron beam between larger and smaller target areas lets one X-ray source balance spatial resolution and imaging time.
Multiple pulsed electron columns create separated x-ray origins for single-exposure phase, scatter, and attenuation imaging with lower motion artifacts.
Micro-beam Talbot fringes enable submicron x-ray imaging with large-pixel detectors, preserving throughput and detector efficiency.
Stacking impervious and pervious sheets forms uniform grating slits, improving precision and thickness for high-energy X-ray imaging.
Electroplating top bridges after grating bending cuts bridge stress and improves mechanical stability in X-ray dark-field and phase-contrast gratings.
Controlled feature sizes and absorption let a pseudo-random diffuser support consistent speckle correlations across x-ray and neutron imaging.
Subtracting a secondary-radiation image from a target image helps remove spots, blur, and rings that degrade X-ray sample imaging.