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在 A 带中 CH3I 的飞秒脉冲宽度对时间分辨光解的影响的波包计算。

Wave packet calculations on the effect of the femtosecond pulse width in the time-resolved photodissociation of CH3I in the A-band.

机构信息

Instituto de Física Fundamental, C.S.I.C., Serrano 123, 28006 Madrid, Spain.

出版信息

Phys Chem Chem Phys. 2011 Feb 14;13(6):2228-36. doi: 10.1039/c0cp01508c. Epub 2010 Nov 25.

Abstract

The effect of changing the temporal width of the pump and probe pulses in the time-resolved photodissociation of CH(3)I in the A-band has been investigated using multisurface nonadiabatic wave packet calculations. The effect is analyzed by examining properties like the photodissociation reaction times and the CH(3) fragment vibrational and rotational distributions, by using four different widths of the pump and probe pulses, namely pulses with full-width-at-half-maximum of 100, 50, 20, and 10 fs. Simulations are carried out for two different excitation wavelengths, 295 and 230 nm, located to the red and to the blue of the maximum of the absorption spectrum, in order to explore possible effects of the excitation wavelength. The reaction times are found to decrease significantly with decreasing pulse temporal width. The times associated with the CH(3) + I*((2)P(1/2)) dissociation channels decrease more remarkably than those of the CH(3) + I((2)P(3/2)) channels. The results indicate that for excitation wavelengths located to the blue of the absorption spectrum maximum the effect of changing the pulse width is less pronounced than for wavelengths to the red of the spectrum maximum. On the contrary, the CH(3) vibrational and rotational distributions show little variation upon large changes in the pulse width. The trends found are explained in terms of the changes in the spectral bandwidth of the pulses and of the shape and slope of the absorption spectrum at the different excitation wavelengths.

摘要

利用多表面非绝热波包计算研究了在 A 带中 CH(3)I 的时间分辨光解中改变泵浦和探测脉冲的时间宽度的影响。通过检查光解反应时间和 CH(3)碎片的振动和转动分布等性质,分析了这种影响,使用了四种不同宽度的泵浦和探测脉冲,即半峰全宽为 100、50、20 和 10 fs 的脉冲。模拟了两个不同的激发波长,即 295 和 230nm,分别位于吸收光谱的最大值的红色和蓝色,以探索激发波长的可能影响。发现反应时间随脉冲时间宽度的减小而显著减小。与 CH(3) + I((2)P(3/2)) 解离通道相关的时间比 CH(3) + I*((2)P(1/2)) 通道的时间减少得更显著。结果表明,对于位于吸收光谱最大值蓝色的激发波长,改变脉冲宽度的影响不如位于光谱最大值红色的激发波长明显。相反,CH(3)的振动和转动分布在脉冲宽度发生很大变化时几乎没有变化。这些趋势可以根据脉冲的光谱带宽变化以及在不同激发波长下吸收光谱的形状和斜率来解释。

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