A dual-source system combines high-power laser plasma generation with lower-power spectral detection to measure elemental concentrations and molecular compounds.
Portable standoff Raman detector uses fiber optic bundle segmentation to separate spectral signals from fluorescence noise.
Identifies common spectral peaks to detect anomalies without predefined substance assumptions, resolving detection accuracy limits.
A fluorescence detection device uses a rough surface layer to redirect emitted light into multiple directions for broad aperture collection.
A hemispherical optical integrator uses a plane portion with distinct specular and diffuse reflection zones to homogenize light.
A gas laser cavity houses the sample cell to generate a standing optical wave that enhances the optogalvanic effect for molecular detection.
A three mirror anastigmat spectrograph uses adjustable focal length to increase light throughput.
Controlled oxygen levels and magnesium composition enhance oxide film breaking for reliable industrial joints.
A compact laser-induced breakdown spectroscopy apparatus analyzes liquid samples using a pulsed laser to generate plasma plumes for optical detection.
LIBS detection sorts catalyst grains by composition to reduce strategic metal waste.
A LIBS analyzer detects sample presence using low-intensity pre-firing fluorescence before initiating high-power laser discharge.
A toroidal mirror directs light through a single entrance slit to spatially separate emission from different spark source regions.
A heat shield positioned between a plasma source and an analysis instrument directs heated gas away, reducing thermal load on sensitive components.
A light collection unit with a concave lens expands the incident angle range to gather plasma emission data across the entire substrate area.
Segmenting the spark stand into a detachable cartridge allows external cleaning, reducing instrument downtime and contamination.