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Emergent geometric description for a topological phase transition in the Kitaev superconductor model

机译:Kitaev超导体模型中拓扑阶段过渡的紧急几何描述

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摘要

Resorting to Wilsonian renormalization group (RG) transformations, we propose an emergent geometric description for a topological phase transition in the Kitaev superconductor model. An effective field theory consists of an emergent bulk action with an extra dimension, an ultraviolet (UV) boundary condition for an initial value of a coupling function, and an infrared (IR) effective action with a fully renormalized coupling function. The bulk action describes the evolution of the coupling function along the direction of the extra dimension, where the extra dimension is identified with an RG scale and the resulting equation of motion is nothing but a β function. In particular, the IR effective field theory turns out to be consistent with a Callan-Symanzik equation which takes into account both the bulk and IR boundary contributions. This derived Callan-Symanzik equation gives rise to a metric structure. Based on this emergent metric tensor, we uncover the equivalence of the entanglement entropy between the emergent geometric description and the quantum field theory in the vicinity of the quantum critical point.
机译:借助威尔逊重修化组(RG)变换,我们提出了一种紧急的几何描述,用于Kitaev超导体模型中的拓扑相转变。有效的场理论由具有额外尺寸的紧急批量动作,耦合功能的初始值的紫外(UV)边界条件,以及具有完全重整耦合功能的红外(IR)有效动作。散装动作描述了沿额外尺寸方向的耦合功能的演变,其中额外的尺寸用RG刻度识别,并且产生的运动方程只不过是β函数。特别是,IR有效领域的理论结果与Callan-Symanzik等式一致,这考虑了散装和IR边界贡献。该派生的Callan-Symanzik方程导致度量结构。基于这种紧急度量张量,我们在量子临界点附近发现了紧急几何描述与量子场理论之间的缠结熵的等价。

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  • 来源
    《Physical Review D》 |2017年第8期|086015.1-086015.7|共7页
  • 作者单位

    Department of Physics POSTECH Pohang Gyeongbuk 790-784 Korea;

    Center for Artificial Low Dimensional Electronic Systems Institute for Basic Science (IBS) 77Cheongam-Ro Pohang Gyeongbuk 790-784 Korea Asia Pacific Center for Theoretical Physics (APCTP) POSTECH Pohang Gyeongbuk 790-784 Korea;

    Department of Physics POSTECH Pohang Gyeongbuk 790-784 Korea Asia Pacific Center for Theoretical Physics (APCTP) POSTECH Pohang Gyeongbuk 790-784 Korea;

    Department of Physics POSTECH Pohang Gyeongbuk 790-784 Korea Asia Pacific Center for Theoretical Physics (APCTP) POSTECH Pohang Gyeongbuk 790-784 Korea;

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