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Experimental, theoretical and computational investigation of the inelastic neutron scattering spectrum of a homonuclear diatomic molecule in a nearly spherical trap: H2@C60

机译:H2 @ C60近似球形陷阱中同核双原子分子非弹性中子散射光谱的实验,理论和计算研究

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摘要

In this paper we report a methodology for calculating the inelastic neutron scattering spectrum of homonuclear diatomic molecules confined within nano-cavities of spherical symmetry. The method is based on the expansion of the confining potential into multipoles of the coupled rotational and translational angular variables. The Hamiltonian and the INS transition probabilities are evaluated analytically. The method affords a fast and computationally inexpensive way to simulate the inelastic neutron scattering spectrum of molecular hydrogen confined in fullerene cages. The potential energy surface is effectively parametrized in terms of few physical parameters comprising an harmonic term, anharmonic corrections and translation–rotation couplings. The parameters are refined by matching the simulations against the experiments and the excitation modes are identified for transfer energies up to 215 meV.
机译:在本文中,我们报告了一种方法,用于计算球形对称纳米腔内同核双原子分子的非弹性中子散射光谱。该方法基于将约束电位扩展为耦合的旋转和平移角度变量的多极。通过分析评估哈密顿量和INS转移概率。该方法提供了一种快速且计算廉价的方式来模拟富勒烯笼中分子氢的非弹性中子散射光谱。可以通过很少的物理参数(包括谐波项,非谐波校正和平移-旋转耦合)对势能面进行有效地参数化。通过将仿真与实验进行匹配来优化参数,并为高达215 meV的传输能量确定激励模式。

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