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Symmetry-breaking in the H2@C60endofullerene revealed by inelastic neutron scattering at low temperature

机译:低温非弹性中子散射揭示H2 @ C60富勒烯的对称性破坏

摘要

The fine structure of the rotational ground state of molecular ortho-hydrogen confined inside the fullerene cage C60 is investigated by inelastic neutron scattering (INS). The INS line corresponding to transitions between the three sub-levels comprising the ortho ground state to the non-degenerate para ground state was studied as a function of temperature down to 60 mK in neutron energy gain. The experiments show that at ambient pressure the three ortho sub-levels are split into a low energy non-degenerate level and a high energy doubly degenerate level separated by 0.135 ± 0.010 meV. This observation is consistent with hydrogen molecules being located at sites with axial symmetry superseding the icosahedral symmetry of isolated rigid C60 cages in the solid phase. To gain insight into the role of inter-cage interactions in determining the symmetry breaking potential, the effects of hydrostatic pressure on the fine structure of the line was also investigated. The analysis of the INS spectra shows that the potential and the energy levels of H2 are sensitive to the orientation of neighbouring cages, consistent with the low-temperature crystalline phase of C60.
机译:通过非弹性中子散射(INS)研究了富勒烯笼C60内部分子氢的旋转基态的精细结构。研究了与中子能量增益低至60 mK的温度有关的INS线,该INS线对应于包括正交基态到非简并对位基态的三个子层之间的过渡。实验表明,在环境压力下,三个正交子能级分为低能非简并能级和高能双简并能级,相隔0.135±0.010 meV。该观察结果与氢分子位于轴向对称位置取代了固相分离的刚性C60笼的二十面体对称一致。为了深入了解笼间相互作用在确定对称断裂电位中的作用,还研究了静水压力对管线精细结构的影响。 INS光谱分析表明,H2的电势和能级对相邻笼的取向敏感,与C60的低温结晶相一致。

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