QUANTUM-THEORY OF LASER CATALYSIS IN ONE AND 3 DIMENSIONS

被引:6
作者
SEIDEMAN, T
KRAUSE, JL
SHAPIRO, M
机构
[1] WEIZMANN INST SCI, DEPT CHEM PHYS, IL-76100 REHOVOT, ISRAEL
[2] UNIV CALIF BERKELEY, DEPT CHEM, BERKELEY, CA 94720 USA
来源
FARADAY DISCUSSIONS | 1991年 / 91卷
关键词
D O I
10.1039/dc9919100271
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
A theory of the laser catalysis of the H + H-2 exchange reaction in the collinear configuration and in three dimensions is presented. The collinear H + H-2 system in a strong laser field is treated by a method composed of a converged coupled channels expansion for the non-radiative processes, coupled with an exact partitioning technique for the interaction with the radiation. The method enables computations to be performed for an arbitrary number of field-intensities with very little effort beyond that required for a single-intensity computation. By studying the optical reactive line-shapes as a function of the scattering energy, the signature of the scattering resonances on the optically induced reaction is unravelled. It is shown that when the collision energy is tuned to a resonance, laser catalysis results in selective vibrational excitation of the product H-2 molecule. Implications of this effect for past and future experiments are discussed. A three-dimensional theory based on the same exact partitioning technique is then presented. In this case, the bound-free scattering amplitudes, which serve as input to the theory, are obtained by assuming separability in terms of a hindered-rotor vibrationally adiabatic basis. We use the theory to compute reactive differential and integral laser-catalysis cross-sections. We study the laser intensity dependence of the reactivity, the role played by isolated and overlapping power-broadened resonances and how the angle of the relative velocities of the reagents affects the reactivity.
引用
收藏
页码:271 / 288
页数:18
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