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Z-scan theoretical analysis for three-, four- and five-photon absorption
Authors:Daniel S. Corrê  a,Lino Misoguti,Florencio E. Hernandez
Affiliation:a Instituto de Física de São Carlos, Universidade de São Paulo, Caixa Postal 369, 13560-970 São Carlos, SP, Brazil
b Department of Chemistry and College of Optics and Photonics/CREOL and FPCE, University of Central Florida, P.O. Box 162366, Orlando, FL 32816-2366, USA
Abstract:In this work, we report a theoretical analysis of three-, four- and five-photon absorption process using the open aperture Z-scan technique. The normalized transmittance equations presented here can be used to fit the experimental data, allowing the determination of material’s multi-photon absorption cross-section. Through simulations, we observed the expected sharpening of the Z-scan curve for higher order nonlinear absorption. The normalized transmittance change as a function of the excitation irradiance displays distinct slopes for process with distinct number of photons, which can be used for determining the origin of the nonlinear processes. Optical limiting curves were also simulated for multi-photon absorption processes, demonstrating that high limiting thresholds occur for higher order processes.
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