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Holographic Dual of Crosscap Conformal Field Theory

Published 6 May 2024 in hep-th | (2405.03755v3)

Abstract: We propose a holographic dual for 2D CFT defined on closed non-orientable manifolds, such as the real projective plane $\mathbb{RP}2$ and the Klein bottle $\mathbb{K}2$. Such CFT can be constructed by introducing antipodally identified cuttings, i.e. crosscaps, to a sphere and hence called crosscap CFT (XCFT). The gravity dual is AdS$_3$ spacetime with dS$_2$ end-of-the-world branes. In particular, the Lorentzian spacetime with a global dS$_2$ brane is dual to the unitary time evolution of a crosscap state in CFT, post-selected on the CFT ground state. We compute the holographic $\mathbb{RP}2$ partition function (or the $p$-function), one-point function, and $\mathbb{K}2$ partition function, and see that they successfully reproduce the XCFT results. We also show a holographic $p$-theorem as an application.

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