Comprehensive Optical Characterization of Low-Dimensional Nanomaterials
Resolving Spatial Carrier Dynamics, Bandgaps, and Dispersion Uniformity
Photon etc. offers a comprehensive suite of products to probe the optoelectronic properties of zero-dimensional nanomaterials. From small- and large-area hyperspectral imaging systems to Laser Line Tunable Filters (LLTF) and infrared cameras, our instruments are engineered to deliver the precision required for cutting-edge quantum dot and nanoparticle characterization.
By combining outstanding diffraction-limited spatial resolution and absolute intensity calibration with broad wavelength coverage (VIS-SWIR), our IMA™ and Grand-EOS™ systems empower researchers to perform deep quantitative analyses.
Existing customers are already taking advantage of these capabilities to track photoluminescence (PL) energy shifts, determine quantum dot bandgaps, map Quasi-Fermi level splitting, visualize spatial carrier dynamics, and map nanoparticle dispersion on substrates. Whether your laboratory is executing hyperspectral single-particle tracking, mapping the spatially resolved emission energies of quantum dot structures, or optimizing synthesis and fabrication processes, Photon etc.’s technology bridges the gap between high-throughput imaging and rigorous spectroscopic analysis to accelerate your nanoscale discoveries.
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Related products
Fig. 1 – Source SPIE Digital Library
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