Radiates distinct X-ray spectra at separate scanning locations to generate cross-section data for layered target imaging.
An X-ray detection device uses an energy filter to attenuate low-energy radiation before it reaches the sensing member.
A lithographic apparatus prints structures using distinct non-telecentric illumination angles to measure focus performance.
Switchable x-ray source generates dual-energy images using selective filtration.
A mammography system acquires a pre-exposure image using a radio-opaque mask to calculate X-ray scatter contributions for main image correction.
A luminescent beam stop converts x-rays into light via a YAG scintillator, enabling real-time intensity monitoring without damaging detectors.
Segmented HTS tape winding simplifies coil assembly and reduces cooling complexity in synchrotron insertion devices.
Segmenting the detector into layers with distinct emission wavelengths resolves measurement precision and device complexity trade-offs in tumor imaging.
Segmented auxiliary carbon nanotube sources eliminate c-arm mechanical deformation and alignment artifacts during multi-planar mapping.
Physics-based decomposition replaces heuristic subtraction to resolve contradictions between material contrast and quantitative accuracy in spectral CT imaging.
An acousto-optic device modulates laser beams to generate a dynamic optical landscape for particle separation.
Independent target reorientation during simultaneous scanning reduces inspection time while maintaining measurement precision and image quality.
Multilayer reflective stacks with trilayer films minimize the Z-effect and M3D distortions by lowering effective atomic number across wide reflection angles.
Correction logic compensates for magnetization and eddy current errors during fast energy changes to maintain beam precision.
Ion implantation embeds metallic nanoparticles into EUV lithography protective layers to neutralize reactive species and extend component lifetime.
An energy filter shapes the Bragg peak to maintain uniform dose distribution despite patient breathing displacement.
Grazing incidence geometry enables durable silicon carbide filters to separate intense pump lasers from broadband XUV signals without spatial dispersion.
Vacuum suction and sticky surfaces detach debris from an EUV collector, maintaining reflection efficiency during continuous operation.
Sequential gas jets and magnetic fields invert electron spin, resolving the trade-off between effective material treatment and device complexity.