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On the state selection of linear triatomic molecules by electrostatic hexapole fields

机译:利用静电六极场对线性三原子分子的状态选择

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Electrostatic hexapole state-selector is a versatile tool in experimental stereodynamics. The requirement of appropriate models to correctly predict the behavior of molecules in the hexapole motivated us to realize a treatment that predicts the Stark effect of linear triatomic molecules with rotational doublet states. Various perturbative approximations are conventionally adopted to obtain analytic Stark energy derivatives of a truncated Hamiltonian matrix, without utilizing numerical diagonalization of the full Hamiltonian matrix. By including both the low and high field effects, which were alternatively ignored in the analytical formulae of such approximate approaches, herein we demonstrate that the performance of hexapole state selector to linear triatomic molecules can be appropriately predicted via Van Vleck transformation. This method can provide analytic Stark energy derivatives that are acceptably in consistent with the ones obtained via numerical diagonalization of the full Hamiltonian matrix. Particularly, this work is suitable for v(2) = 1 level of linear triatomic molecules, due to the following reasons: (1) the Stark energy derivative and the molecular orientation as a function of the electric field are expressed in analytical formulae, hence it is suitable for implementation without involving numerical diagonalization of the full Hamiltonian matrix; (2) a better prediction of the focusing curves with respect to conventional analytical treatments is provided, allowing a reliable determination of the selected state compositions and molecular orientation. Published by AIP Publishing.
机译:静电六极状态选择器是实验立体动力学中的多功能工具。需要适当的模型来正确预测六极子中分子的行为,促使我们实现了一种预测具有旋转双峰态的线性三原子分子的斯塔克效应的处理方法。传统上采用各种摄动近似来获得截断的哈密顿矩阵的解析斯塔克能量导数,而不利用完整的哈密顿矩阵的数值对角化。通过同时包括低场效应和高场效应,在这种近似方法的分析公式中可以忽略不计,此处我们证明了可以通过Van Vleck变换适当预测六极态选择器对线性三原子分子的性能。该方法可以提供与通过完整哈密顿矩阵的数值对角化获得的解析斯塔克能量导数一致的解析斯塔克能量导数。特别地,由于以下原因,这项工作适用于v(2)= 1级的线性三原子分子:(1)解析式表示了Stark能量导数和分子方向与电场的关系,因此它适合于实现而不涉及整个汉密尔顿矩阵的数值对角线化; (2)提供了相对于常规分析方法更好的聚焦曲线预测,从而可以可靠地确定选定的状态组成和分子取向。由AIP Publishing发布。

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