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The continuum gauge field-theory model for low-energy electronic states of icosahedral fullerenes

机译:二十面体富勒烯低能电子态的连续谱场理论模型

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The low-energy electronic structure of icosahedral fullerenes is studied within the field-theory model. In the field model, the pentagonal rings in the fullerene are simulated by two kinds of gauge fields. The first one, non-abelian field, follows from so-called K spin rotation invariance for the spinor field while the second one describes the elastic flow due to pentagonal apical disclinations. For fullerene molecule, these fluxes are taken into account by introducing an effective field due to magnetic monopole placed at the center of a sphere. Additionally, the spherical geometry of the fullerene is incorporated via the spin connection term. The exact analytical solution of the problem (both for the eigenfunctions and the energy spectrum) is found.
机译:在场理论模型中研究了二十面体富勒烯的低能电子结构。在场模型中,通过两种规范场模拟富勒烯中的五角环。第一个非阿贝尔场来自于脊柱场的所谓K自旋旋转不变性,而第二个场则描述了由于五角形顶错所产生的弹性流动。对于富勒烯分子,由于放置在球体中心的磁性单极子引起的有效场而考虑了这些通量。另外,通过自旋连接项将富勒烯的球形几何形状并入。找到了该问题的精确解析解(对于本征函数和能谱)。

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