Artículos de revistas
Role of the range of the dipole function in the classical dynamics of molecular dissociation
Fecha
2013-01-03Registro en:
Physical Review E - Statistical, Nonlinear, and Soft Matter Physics, v. 87, n. 1, 2013.
1539-3755
1550-2376
10.1103/PhysRevE.87.014901
WOS:000314102900026
2-s2.0-84872326396
2-s2.0-84872326396.pdf
Autor
Universidade Estadual Paulista (Unesp)
Institución
Resumen
The dissociation dynamics of heteronuclear diatomic molecules induced by infrared laser pulses is investigated within the framework of the classical driven Morse oscillator. The interaction between the molecule and the laser field described in the dipole formulation is given by the product of a time-dependent external field with a position-dependent permanent dipole function. The effects of changing the spatial range of the dipole function in the classical dissociation dynamics of large ensembles of trajectories are studied. Numerical calculations have been performed for distinct amplitudes and carrier frequencies of the external pulses and also for ensembles with different initial energies. It is found that there exist a set of values of the dipole range for which the dissociation probability can be completely suppressed. The dependence of the dissociation on the dipole range is explained through the examination of the Fourier series coefficients of the dipole function in the angle variable of the free system. In particular, the suppression of dissociation corresponds to dipole ranges for which the Fourier coefficients associated with nonlinear resonances are null and the chaotic region in the phase space is reduced to thin layers. In this context, it is shown that the suppression of dissociation of heteronuclear molecules for certain frequencies of the external field is a consequence of the finite range of the corresponding permanent dipole. © 2013 American Physical Society.
Materias
Ítems relacionados
Mostrando ítems relacionados por Título, autor o materia.
-
Shock Wave Study of the Thermal Dissociations of C3F6 and c-C3F6. I. Dissociation of Hexafluoropropene
Cobos, Carlos Jorge; Sölter, L.; Tellbach, E.; Troe, J. (American Chemical Society, 2014-06)The thermal dissociation of C3F6 was studied between 1330 and 2210 K in shock waves monitoring the UV absorption of CF2. CF2 yields of about 2.6 per parent C3F6 were obtained at reactant concentrations of 500-1000 ppm in ... -
Dissociation of deprotonated microcystin variants by collision-induced dissociation following electrospray ionization
DOERR, Felipe Augusto; OLIVEIRA-SILVA, Diogo; LOPES, Norberto Peporine; IGLESIAS, Jacobo; VOLMER, Dietrich A.; PINTO, Ernani (WILEY-BLACKWELL, 2011)Microcystins (MC) are a family of hepatotoxic cyclic heptapeptides produced by a number of different cyanobacterial species. Considering the recent advances in the characterization of deprotonated peptides by mass spectrometry, ... -
Shock Wave Study of the Thermal Dissociations of C3F6 and c-C3F6. II. Dissociation of Hexafluorocyclopropane and Dimerization of CF2
Cobos, Carlos Jorge; Sölter, L.; Tellbach, E.; Troe, J. (American Chemical Society, 2014-06)The thermal dissociation of c-C3F6 has been studied in shock waves over the range 620–1030 K monitoring the UV absorption of CF2. The reaction was studied close to its high-pressure limit, but some high-temperature falloff ...