Quantum gravity from timelike Liouville theory

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Abstract

A proper definition of the path integral of quantum gravity has been a long- standing puzzle because the Weyl factor of the Euclidean metric has a wrong-sign kinetic term. We propose a definition of two-dimensional Liouville quantum gravity with cos- mological constant using conformal bootstrap for the timelike Liouville theory coupled to supercritical matter. We prove a no-ghost theorem for the states in the BRST cohomology. We show that the four-point function constructed by gluing the timelike Liouville three- point functions is well defined and crossing symmetric (numerically) for external Liouville energies corresponding to all physical states in the BRST cohomology with the choice of the Ribault-Santachiara contour for the internal energy.

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Bautista, T., Dabholkar, A., & Erbin, H. (2019). Quantum gravity from timelike Liouville theory. Journal of High Energy Physics, 2019(10). https://doi.org/10.1007/JHEP10(2019)284

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