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Emergent Horava gravity in graphene

机译:石墨烯中的Horava引力

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First of all, we reconsider the tight-binding model of monolayer graphene, in which the variations of the hopping parameters are allowed. We demonstrate that the emergent 2D Weitzenbock geometry as well as the emergent U(1) gauge field appear. The emergent gauge field is equal to the linear combination of the components of the zweibein. Therefore, we actually deal with the gauge fixed version of the emergent 2 + 1 D teleparallel gravity. In particular, we work out the case, when the variations of the hopping parameters are due to the elastic deformations, and relate the elastic deformations with the emergent zweibein. Next, we investigate the tight-binding model with the varying intralayer hopping parameters for the multilayer graphene with the ABC stacking. In this case the emergent 2D Weitzenbock geometry and the emergent U(1) gauge field appear as well, and the emergent low energy effective field theory has the anisotropic scaling.
机译:首先,我们重新考虑单层石墨烯的紧密结合模型,其中允许跳跃参数的变化。我们证明了出现2D Weitzenbock几何以及出现U(1)规范场。紧急应变场等于两维贝因分量的线性组合。因此,我们实际上处理的是2 + 1 D平行远心引力的轨距固定版本。尤其是,当跳变参数的变化是由于弹性变形而引起时,我们将情况弄清楚了,并将弹性变形与出现的zweibein关联起来。接下来,我们研究具有ABC堆叠的多层石墨烯具有变化的层内跳跃参数的紧密结合模型。在这种情况下,也会出现2D Weitzenbock几何形状和U(1)规范场的出现,并且低能量有效场理论具有各向异性的标度。

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