Differential attenuation with a reference arm and depolarized optics improves low-dose radiation sensing while limiting temperature and polarization drift.
Radiochromic film color change captured by a smartphone and matched to calibration curves enables more accurate radiation dose quantification.
A radiation dosimeter uses a colorant layer to absorb ambient light and protect the stored signal in the stimulable phosphor.
Green-to-red chromotropic shift via radical diffusion resolves low contrast inconsistency in visual dosimetry.
A photonic polymer multilayer film detects ionizing radiation through structural color shifts induced by refractive index changes.
A disposable credit card dosimeter integrates a self-indicating sensor and machine-readable electronics for immediate radiation exposure assessment.
Segmented masks with varying pad sizes extract direct constant flare reference data, resolving long-range flare precision limits in EUV lithography.
Polymer encapsulation prevents adhesive tampering and UV damage while enabling accurate high-energy radiation monitoring.
A radiation detection medium calibration method exposes arbitrary locations to known dose levels and automatically determines their positions.
Optimized spiro-oxazine derivatives extend sensor lifetime while maintaining reusability for long-term UV monitoring.