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Classical Liouville Three-point Functions from Riemann-Hilbert Analysis

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arxiv 1311.2888 v3 pith:VKHPKUAV submitted 2013-11-12 hep-th math-phmath.CAmath.MP

classification hep-thmath-phmath.CAmath.MP
keywords functionsliouvilleclassicalcorrelationmethodthree-pointanalysisequation
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We study semiclassical correlation functions in Liouville field theory on a two-sphere when all operators have large conformal dimensions. In the usual approach, such computation involves solving the classical Liouville equation, which is known to be extremely difficult for higher-point functions. To overcome this difficulty, we propose a new method based on the Riemann-Hilbert analysis, which is applied recently to the holographic calculation of correlation functions in AdS/CFT. The method allows us to directly compute the correlation functions without solving the Liouville equation explicitly. To demonstrate its utility, we apply it to three-point functions, which are known to be solvable, and confirm that it correctly reproduces the classical limit of the DOZZ formula for quantum three-point functions. This provides good evidence for the validity of this method.

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  1. Liouville Theory, AdS$_2$ String, and Three-Point Functions

    hep-th 2019-08 conditional novelty 3.0 of 10

    Classical three-point functions in Liouville theory and for AdS2 strings can be derived from ODE/IM-style functional equations, with the Liouville result matching the DOZZ formula and the AdS2 result expressed through...

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