Millar T J, DeFrees D J, McLean A D, Herbst E
Mathematics Department, UMIST, Manchester, UK.
Astron Astrophys. 1988;194:250-6.
The approach of Bates to the determination of neutral product branching ratios in ion-electron dissociative recombination reactions has been utilised in conjunction with quantum chemical techniques to redetermine branching ratios for a wide variety of important reactions of this class in dense interstellar clouds. The branching ratios have then been used in a pseudo time-dependent model calculation of the gas phase chemistry of a dark cloud resembling TMC-1 and the results compared with an analogous model containing previously used branching ratios. In general, the changes in branching ratios lead to stronger effects on calculated molecular abundances at steady state than at earlier times and often lead to reductions in the calculated abundances of complex molecules. However, at the so-called "early time" when complex molecule synthesis is most efficient, the abundances of complex molecules are hardly affected by the newly used branching ratios.
贝茨确定离子 - 电子离解复合反应中中性产物分支比的方法已与量子化学技术结合使用,以重新确定在致密星际云中此类各种重要反应的分支比。然后,这些分支比被用于对类似于TMC - 1的暗星云气相化学进行伪时间相关模型计算,并将结果与包含先前使用的分支比的类似模型进行比较。一般来说,分支比的变化对稳态下计算出的分子丰度的影响比对早期的影响更强,并且常常导致复杂分子计算丰度的降低。然而,在复杂分子合成最有效的所谓“早期”,复杂分子的丰度几乎不受新使用的分支比的影响。