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Coalescence of metastable states in chemical reactions: double poles of the scattering matrix and exceptional points

机译:化学反应中亚稳态的合并:散射矩阵的双极点和特殊点

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Accidental degeneracy of two scattering resonances in chemical reactions is discussed. A novel analytical parameterization for the scattering matrix elements valid in the presence of two interacting resonances is derived and applied to investigate the coalescence of metastable states leading to double poles in the partial-wave amplitude. We show how double poles can manifest themselves in reaction cross-sections and discuss their relationship with exceptional points. The presence of two degenerate resonances interacting with each other can create a peculiar double-peak structure in the reaction probability. At the energy where the two decaying states coalesce the scattering matrix has a double pole and correspondingly the reaction probability reaches its minimum value. This novel formula has been tested with the well-established data obtained for the F + H2 reaction, for which previous studies have revealed the existence of two interfering resonance pathways. The good agreement of model predictions and quantum scattering calculations shows that the present approach is reliable. Hence, we claim that it provides a way for the observation of interacting resonances in molecular collisions. Resonance positions and partial widths can be obtained by fitting the numerically calculated state-to-state reaction probabilities to the square modulus of the novel expression for the scattering matrix elements derived in the paper.
机译:讨论了化学反应中两个散射共振的偶然简并性。推导了在两个相互作用的共振条件下有效的散射矩阵元素的新型分析参数化方法,并将其用于研究导致部分波振幅出现双极点的亚稳态的合并。我们展示了双极如何在反应截面中表现出来,并讨论了它们与例外点的关系。彼此相互作用的两个简并共振的存在可以在反应概率中产生特殊的双峰结构。在两个衰减状态合并的能量处,散射矩阵具有一个双极点,相应地,反应概率达到其最小值。该新配方已通过针对F + H2反应获得的公认数据进行了测试,以前的研究已经揭示了存在两种干扰共振途径。模型预测和量子散射计算的良好一致性表明,该方法是可靠的。因此,我们声称它为观察分子碰撞中的相互作用共振提供了一种方法。共振位置和部分宽度可以通过将数值计算的状态间反应概率拟合为本文中得出的散射矩阵元素的新表达式的平方模来获得。

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