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State-to-State Differential Cross Sections for Inelastic Collisionsof NO Radicals with para-H2 and ortho-D2

机译:非弹性碰撞的州际差分横截面H2和邻位D2的NO自由基的合成

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摘要

We present state-to-state differential cross sections for collisions of NO molecules (X2Π1/2, j = 1/2f) with para-H2 and ortho-D2 molecules, at a collision energy of 510 and 450 cm–1, respectively. The angular scattering distributions for various final states of the NO radical are measured with high resolution using a crossed molecular beam apparatus that employs the combination of Stark deceleration and velocity map imaging. Rotational rainbows as well as diffraction oscillations are fully resolved in the scattering images. The observed angular scattering distributions are in excellent agreement with the cross sections obtained from quantum close-coupling scattering calculations based on recently computed NO–H2 potential energy surfaces, except for excitation of NO into the j = 7/2f channel. For this particular inelastic channel, a significant discrepancy with theory is observed, despite various additional measurements and calculations, at present, not understood.
机译:我们给出了NO分子(X 2 Π1/ 2,j = 1 / 2f)与对位H2和邻位D2分子碰撞时的状态间微分截面,碰撞能量为分别为510和450 cm –1 。 NO自由基各种最终状态的角散射分布是使用交叉分子束装置以高分辨率测量的,该装置采用了Stark减速和速度图成像的组合。旋转彩虹以及衍射振荡在散射图像中得到完全解决。观察到的角散射分布与基于最近计算的NO–H2势能面的量子紧密耦合散射计算所获得的横截面非常一致,除了NO激发进入j = 7 / 2f通道外。对于这种特定的非弹性通道,尽管目前尚不了解各种其他测量和计算,但仍观察到与理论的显着差异。

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