Manufacturing of miniaturized photonic devices based on diamond technology is possible by implanting the pristine material with highly energetic particles. Here we report on the spectral characterization of the optical constants of proton-irradiated diamond. Absorption of the irradiated zones was estimated in the UV-vis-NIR from direct transmittance measurement using a dedicated setup with enhanced spatial resolution. The OPD data providing an estimation of the thickness of the damaged area and its depth profile, have allowed then evaluation of the extinction coefficient from the transmission measurements. Simultaneous variation of dispersive optical constants makes the modeling significantly more complicated compared to the above cited monochromatic study.
Optical Characterization of Proton Irradiated Diamond / Sytchkova, A.; Lagomarsino, S.; Vannoni , M.; Calusi, S; Olivero, P;. - STAMPA. - (2011), pp. 81671O-1-81671O-6. (Intervento presentato al convegno SPIE Optical Systems Design 2011 conference taking place from September 5-8 in Marseille, France).
Optical Characterization of Proton Irradiated Diamond
LAGOMARSINO, STEFANO;Calusi, S;
2011
Abstract
Manufacturing of miniaturized photonic devices based on diamond technology is possible by implanting the pristine material with highly energetic particles. Here we report on the spectral characterization of the optical constants of proton-irradiated diamond. Absorption of the irradiated zones was estimated in the UV-vis-NIR from direct transmittance measurement using a dedicated setup with enhanced spatial resolution. The OPD data providing an estimation of the thickness of the damaged area and its depth profile, have allowed then evaluation of the extinction coefficient from the transmission measurements. Simultaneous variation of dispersive optical constants makes the modeling significantly more complicated compared to the above cited monochromatic study.File | Dimensione | Formato | |
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