论文标题
Rovibrationally兴奋的冷碰撞D $ _2 $分子
Cold collisions of rovibrationally excited D$_2$ molecules
论文作者
论文摘要
H $ _2 $+H $ _2 $系统长期以来一直被视为双振动碰撞中RO振动能量转移的基准系统。但是,到目前为止,大多数研究都集中在涉及地面振动水平或第一个激发振动状态下H $ _2 $分子的碰撞上。虽然H $ _2 $+H $ _2 $/HD碰撞由于它们在天体物理学中的重要作用而受到了广泛的关注,但D $ _2 $+D $ _2 $碰撞受到了较少的关注。最近,Zhou等。 [Nat。化学4 658(2022)]检查了在$ v = 2 $振动水平和$ j = 2 $旋转水平的两个对齐d $ _2 $分子的碰撞中,旋转能量转移的立体动力学方面。在这里,我们报告了旋转和振动能传递的量子计算,这是在振动水平上制备的两个D $ _2 $分子的碰撞中,最高$ V = 2 $,并确定关键共振特征,这些共振特征有助于Zhou等人的实验结果中的角度分布。量子散射计算是在全尺寸上进行的,并使用最近开发的高度精确的六维势能表面对H $ _4 $系统进行了刚性近似,该系统允许涉及高度振动激发的H $ _2 $及其同位素学的碰撞描述。
The H$_2$+H$_2$ system has long been considered as a benchmark system for ro-vibrational energy transfer in bimolecular collisions. However, most studies thus far have focused on collisions involving H$_2$ molecules in the ground vibrational level or in the first excited vibrational state. While H$_2$+H$_2$/HD collisions have received wide attention due to the important role they play in astrophysics, D$_2$+D$_2$ collisions have received much less attention. Recently, Zhou et al. [Nat. Chem. 4 658 (2022)] examined stereodynamic aspects of rotational energy transfer in collisions of two aligned D$_2$ molecules prepared in the $v=2$ vibrational level and $j=2$ rotational level. Here, we report quantum calculations of rotational and vibrational energy transfer in collisions of two D$_2$ molecules prepared in vibrational levels up to $v=2$ and identify key resonance features that contribute to the angular distribution in the experimental results of Zhou et al. The quantum scattering calculations were performed in full dimensionality and using the rigid-rotor approximation using a recently-developed highly-accurate six-dimensional potential energy surface for the H$_4$ system that allows descriptions of collisions involving highly vibrationally excited H$_2$ and its isotopologues.