Publikace: Second-order nonlinear optical properties of Lambda-shaped pyrazine derivatives
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Castet, Frédéric
Gillet, Adrien
Bureš, Filip
Plaquet, Aurélie
Rodriguez, Vincent
Champagne, Benoit
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Elsevier Science
Abstrakt
The linear and nonlinear optical (NLO) properties of a series of A-shaped derivatives containing a 4,5-dicyanopyrazine acceptor unit, N,N-dimethylamino donor groups and systematically enlarged pi-conjugated linkers are investigated by means of UV/Visible and Hyper-Rayleigh scattering spectroscopies. Density functional theory calculations are also carried out to rationalize the magnitude and symmetry of the NLO responses. The results demonstrate that these compounds possess two low-lying excited electronic states close to each other in energy, which are accessible through one-photon optical transitions respectively polarized perpendicular and parallel to the two-fold molecular axis. These two states contribute additively to the first hyperpolarizability, which exhibits a dominant dipolar character. We also show that the NLO responses significantly deviate from Kleinman's index permutation symmetry.
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pyrazines, nonlinear optics, Hyper-Rayleigh scattering, first hyperpolarizability, Kleinman symmetry, density functional theory, nelineární optické vlastnosti druhého řádu, pyrazin, DFT kalkulace, Kleinman symetrie