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      Tensor Networks from Kinematic Space

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          Abstract

          We point out that the MERA network for the ground state of a 1+1-dimensional conformal field theory has the same structural features as kinematic space---the geometry of CFT intervals. In holographic theories kinematic space becomes identified with the space of bulk geodesics studied in integral geometry. We argue that in these settings MERA is best viewed as a discretization of the space of bulk geodesics rather than of the bulk geometry itself. As a test of this kinematic proposal, we compare the MERA representation of the thermofield-double state with the space of geodesics in the two-sided BTZ geometry, obtaining a detailed agreement which includes the entwinement sector. We discuss how the kinematic proposal can be extended to excited states by generalizing MERA to a broader class of compression networks.

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          Author and article information

          Journal
          2015-12-04
          Article
          10.1007/JHEP07(2016)100
          1512.01548
          da09c20c-8b45-40e9-9c98-3d4ce4eec94a

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

          History
          Custom metadata
          SU-ITP-15/18, SLAC-PUB-16292
          35 pages, 17 figures
          hep-th

          High energy & Particle physics
          High energy & Particle physics

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