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Modeling energy transfer in molecular collisions:Statistical theory versus experiment for highly excited toluene and azulene

机译:分子碰撞中能量转移的建模:高激发甲苯和a苯的统计理论与实验

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The rexcent development and application of themethod of kinetically controlled selective ionization has produced detailed and reliable data on the collisional energy transfer kernel P(E',E) entering master equation theories of unimolecular reacton rates.Here we test the ability of our partially ergodic collision theory (PECT) to predict the functional form of the observed kernel leaving only one parameter,the first moment of the distribution ,to be inpout from other sources.The data explored here include two reactant molecules,toluene and azulene,in collisions with 18 and 8 medium molecules,respectively,ranging from inert gas atoms to n-hptane.The initial energy of the reactant molecule is varied from 10000 cm~(-1) to 49 000 cm~(-1) and 30 000 cm~(-1),respectively.The energy transfer efficiency beta_E is about one-tenth of its ergodic collision limit of unity.The PECT is found to fit the monoexponential form of the kernel determined from the experimental data over a broad range of initial energies E including tail regions of very low probability.A minor but systematic deviation is observed for nearly elastic collisions of large medium molecules.The functional fit is good enough to effectively allow the three parameters of the monoexponential experimental kernel to be replaced by a single parameter representing energy transfer efficiency.
机译:动力学控制选择性电离方法的最新发展和应用已为碰撞能量转移核P(E',E)产生了详细而可靠的数据,从而进入了单分子反应速率主方程理论。在这里,我们测试了部分遍历碰撞的能力理论(PECT)来预测观察到的核的功能形式,仅留下一个参数,即分布的第一时刻,可以从其他来源输入。此处探讨的数据包括碰撞中的两个反应物分子甲苯和a具有18和8个中等分子,分别从惰性气体原子到n-hptane。反应物分子的初始能量从10000 cm〜(-1)到49 000 cm〜(-1)和30 000 cm〜不等。分别为(-1)。能量传递效率beta_E约为其遍历碰撞极限的十分之一.PECT被发现适合从宽范围的实验数据确定的核的单指数形式初始能量E包括极低概率的尾部区域。对于中等大小的大分子几乎发生弹性碰撞,观察到较小但系统的偏差。功能拟合足够好,可以有效地使单指数实验核的三个参数替换为代表能量传递效率的单个参数。

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