Artículos de revistas
Degenerate Two-Photon Absorption in All-Trans Retinal: Nonlinear Spectrum and Theoretical Calculations
Fecha
2010Registro en:
JOURNAL OF PHYSICAL CHEMISTRY A, v.114, n.10, p.3466-3470, 2010
1089-5639
10.1021/jp910010g
Autor
VIVAS, M. G.
SILVA, D. L.
MISOGUTI, Lino
ZALESNY, R.
BARTKOWIAK, W.
MENDONCA, Cleber Renato
Institución
Resumen
In this work we investigate the degenerate two-photon absorption spectrum of all-trans retinal ill ethanol employing the Z-scan technique with femtosecond pulses, The two-photon absorption (2PA) spectrum presents a monotonous increase as the excitation wavelength approaches the one-photon absorption band and it peak at 790 nm. We attribute the 2PA hand to the mixing of states (1)B(u)+-like and vertical bar S(1)>, which are strongly allowed by one- and two-photon, respectively. We modeled the 2PA spectrum by using the sum-over-states approach and obtained spectroscopic parameters of the electronic transitions to vertical bar S >, vertical bar S(2)> (""(1)Bu(+)""), vertical bar S(3)>, and vertical bar S(4)> singlet-excited states. The results were compared with theoretical predictions of one- and two-photon transition calculations using the response Functions formalism within the density functional theory framework with the aid of the CAM-B3LYP functional.