Department of Chemistry, National Taiwan University, Taipei 10617, Taiwan.
Department of Chemistry, Graduate School of Science, Osaka University, Toyonaka, Osaka 560-0043, Japan.
J Chem Phys. 2017 Jul 7;147(1):013917. doi: 10.1063/1.4981025.
The asymmetric-top molecule 2-bromobutane is oriented by means of a hexapole state selector; the angular distribution of the bromine atom photofragment, for the two fine-structure components, is acquired by velocity-map ion imaging. The molecular beam, spatially oriented along the time-of-flight axis, is intersected with a linearly polarized laser, whose polarization is tilted by 45° with respect to the detector surface. To obtain the mixing ratio of the perpendicular and parallel transitions, the fragment ion images and angular distributions can be appropriately simulated to give insight on the population mechanism of the specific electronic state involved at each selected excitation wavelength. The photofragment images obtained at 238.6 nm yielded an asymmetry factor β of 0.67, indicative of the extent of molecular orientation, and an anisotropy parameter β of 1.03, which is a signature of a prevailing parallel transition along the C-Br axis. When the photolysis wavelength is tuned to 254.1 nm, the corresponding angular distribution is less asymmetric (β = 0.24) and the obtained small value β = 0.12 is a characteristic of a predominantly perpendicular transition. The photofragment angular distributions are also affected by hexapole voltage, especially regarding the asymmetry factor, and this aspect provides information on the effect of molecular orientation.
不对称顶分子 2-溴丁烷通过六极状态选择器进行定向;通过速度映射离子成像获得两个精细结构分量的溴原子光碎片的角分布。分子束沿飞行时间轴空间定向,与线性偏振激光相交,激光的偏振相对于探测器表面倾斜 45°。为了获得垂直和平行跃迁的混合比,可以适当模拟碎片离子图像和角分布,以深入了解在每个选定的激发波长下涉及的特定电子态的布居机制。在 238.6nm 处获得的光碎片图像得到了 0.67 的不对称因子 β,表明分子取向的程度,以及 1.03 的各向异性参数 β,这是沿 C-Br 轴主要平行跃迁的特征。当光解波长调谐到 254.1nm 时,相应的角分布不对称性较小(β=0.24),得到的较小值β=0.12 是主要垂直跃迁的特征。光碎片角分布也受到六极电压的影响,特别是关于不对称因子,这方面提供了关于分子取向影响的信息。