Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1534718 | Optics Communications | 2014 | 8 Pages |
Abstract
In this paper, we demonstrate hyper-spectral imaging of fluorescent microspheres in a scanning-confocal-fluorescence microscope by spatially dispersing the spectra using a novel broadband diffractive optic, and applying a nonlinear optimization technique to extract the full-incident spectra. This broadband diffractive optic has a designed optical efficiency of over 90% across the entire visible spectrum. We used this technique to create two-color images of two fluorophores and also extracted their emission spectra with good fidelity. This method can be extended to image both spatially and spectrally overlapping fluorescent samples. Full control in the number of emission spectra and the feasibility of enhanced imaging speed are demonstrated as well.
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Authors
Peng Wang, Carl G. Ebeling, Jordan Gerton, Rajesh Menon,