In-pixel diffraction and polarization structures capture multiple light polarizations at once while preserving sensor sensitivity and quantum efficiency.
Integrating DMD coding, grating dispersion, and reconstruction avoids post-correction distortion in real-time spectral polarization imaging.
A three-wedge birefringent splitter keeps orthogonal beams collinear while adjusting time delay, reducing aberrations in hyperspectral imaging.
Birefringent optics convert particle interference patterns into spectral data, improving characterization when scattering and emission vary.
A single aperture stop and interleaved metasurface cells split light into polarized images for compact, cost-effective full-Stokes capture.
A supercontinuum laser spectrometer uses beam diffusers to reduce spatial coherence and dichroic prisms to direct wavelengths to specialized detectors.
A spectroscopic polarimeter uses rotatable magnetic modulators to generate polarization-modulated light for precise EUV analysis.
A polarization-based optical spectrum analyzer uses a differential group delay device to measure light properties without spatially dispersive elements.
Dynamic sample movement during polarimetry reduces non-stress scattering noise, enabling accurate stress profile determination.
Pulsed far-infrared radiation enables vibration optical activity spectroscopy to evaluate regenerated cartilage quality without complex mechanical testing.
Replacing photoelastic modulators with a rotating polarizer and Foster prism eliminates wavelength dependence while maintaining high spatial resolution.
A spectral analysis device uses a linear polarization filter to obtain independent absorbance spectra parallel and perpendicular to the thin film.
A prism-coupling system adjusts measurement wavelength and fluid properties to capture accurate TM and TE mode spectra.
Synchronized frequency modulation replaces mechanical spatial separation to reduce noise and improve measurement stability.