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(Anti-)de Sitter, Poincare, Super symmetries, and the two Dirac points of graphene

机译:(抗议者De Satter,Poincare,超反反对称和石墨烯的两个Dirac点

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We propose two different high-energy-theory correspondences with graphene (and related materials) scenarios, associated to grain boundaries, that are topological defects for which both Dirac points are necessary. The first correspondence points to a (3 + 1)-dimensional theory, with nonzero torsion, with spatiotemporal gauge group SO(3, 1), locally isomorphic to the Lorentz group in (3 + 1) dimensions, or to the de Sitter group in (2 + 1) dimensions. The other correspondence treats the two Dirac fields as an internal symmetry doublet, and it is linked here with unconventional supersymmetry with SU(2) internal symmetry. Our results are suggestive, rather than conclusive, and pave the way to the inclusion of grain boundaries in the emergent field theory picture associated with these materials, whereas disclinations and dislocations have been already well explored. (C) 2018 Elsevier Inc. All rights reserved.
机译:我们提出了与晶界相关的石墨烯(和相关材料)情景的两种不同的高能理论对应,这是拓扑缺陷所需的拓扑缺陷。 第一个对应的指向(3 + 1) - 二维理论,非零扭转,用时空仪表组,如(3,1),局部同构于(3 + 1)尺寸(3 + 1)的尺寸,或者到De Sitter Group (2 + 1)尺寸。 另外的对应物将两个DIRAC领域视为内部对称性双重,其在此与SU(2)内对称的非传统超对称相关联。 我们的结果是暗示,而不是确凿的,并在与这些材料相关的紧急场理论图片中铺设谷物边界,而披露和脱位已经很好地探索。 (c)2018年Elsevier Inc.保留所有权利。

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