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Explaining the symmetry breaking observed in the endofullerenes H-2@C-60, HF@C-60, and H2O@C-60

机译:解释在Endofullerenes H-2 @ C-60,HF @ C-60和H2O @ C-60中观察到的对称性破裂

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Symmetry breaking has been recently observed in the endofullerenes M@C-60 = H-2, HF, H2O), manifesting in the splittings of the three-fold degenerate ground states of the endohedral ortho-H-2, ortho-H2O and the j = 1 level of HF. The nature of the interaction causing the symmetry breaking is established in this study. A fragment of the solid C-60 is considered, comprised of the central C-60 molecule surrounded by twelve nearest-neighbor (NN) C-60 molecules. The fullerenes have either P (major) or H (minor) orientational orderings, and are assumed to be rigid with I-h symmetry. Only the central C-60 is occupied by the guest molecule M, while the NN fullerenes are all empty. The key proposition of the study is that the electrostatic interactions between the charge densities on the NN C-60 molecules and that on M inside the central C-60 give rise to the symmetry breaking responsible for the measured level splittings. Using this model, the M@C-60 level splittings of interest are calculated variationally and using perturbation theory, for both the P and H orientations. Those obtained for the dominant P orientation are in excellent agreement with the experimental results, with respect to the splitting magnitudes and patterns, for all three M@C-60 systems considered, pointing strongly to the quadrupolar M-NN interactions as the main cause of the symmetry breaking. The level spEittings calculated for the H orientation are about 30 times smaller than the ones in the P orientation.
机译:最近在EndofullerenesM @ C-60 = H-2,HF,H 2 O)中观察到对称性破裂,在胚乳邻-H-2,Ortho-H2O和H2O和所述的三折简并接地状态的分裂中展示J = 1级HF。在本研究中建立了导致对称性断裂的相互作用的性质。考虑固体C-60的片段,由12个最近邻(NN)C-60分子包围的中央C-60分子组成。富勒烯具有P(主要)或H(次要)定位排序,并且假设用I-H对称性刚性。只有中央C-60被访客分子M占用,而NN富勒烯都是空的。该研究的关键命题是NN C-60分子上的电荷密度与中央C-60内部的静电相互作用产生对对称断裂的对称性,对测量的水平分裂负责。使用此模型,感兴趣的M @ C-60级别分配是针对P和H方向的变化和使用扰动理论。对于所考虑的所有三个M @ C-60系统,与实验结果相对于分裂幅度和图案的实验结果非常一致,对于所考虑的所有三个M-60系统,与实验结果相一致,对Quadrupolar M-NN相互作用强烈指向对称打破。针对H方向计算的水平Speittings比P取向中的比例小约30倍。

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