Abstract

We present a novel expression for an integrated correlation function of four superconformal primaries in SU(N) mathcal{N} = 4 supersymmetric Yang-Mills ( mathcal{N} = 4 SYM) theory. This integrated correlator, which is based on supersymmetric localisation, has been the subject of several recent developments. In this paper the correlator is re-expressed as a sum over a two dimensional lattice that is valid for all N and all values of the complex Yang-Mills coupling tau =theta /2pi +4pi i/{g}_{mathrm{YM}}^2 . In this form it is manifestly invariant under SL(2, ℤ) Montonen-Olive duality. Furthermore, it satisfies a remarkable Laplace-difference equation that relates the SU(N) correlator to the SU(N + 1) and SU(N − 1) correlators. For any fixed value of N the correlator can be expressed as an infinite series of non-holomorphic Eisenstein series, Eleft(s;tau, overline{tau}right) with s ∈ ℤ, and rational coefficients that depend on the values of N and s. The perturbative expansion of the integrated correlator is an asymptotic but Borel summable series, in which the n-loop coefficient of order (gYM/π)2n is a rational multiple of ζ(2n + 1). The n = 1 and n = 2 terms agree precisely with results determined directly by integrating the expressions in one-loop and two-loop perturbative mathcal{N} = 4 SYM field theory. Likewise, the charge-k instanton contributions (|k| = 1, 2, . . .) have an asymptotic, but Borel summable, series of perturbative corrections. The large-N expansion of the correlator with fixed τ is a series in powers of {N}^{frac{1}{2}-mathrm{ell}} (ℓ ∈ ℤ) with coefficients that are rational sums of Eleft(s;tau, overline{tau}right) with s ∈ ℤ + 1/2. This gives an all orders derivation of the form of the recently conjectured expansion. We further consider the ’t Hooft topological expansion of large-N Yang-Mills theory in which lambda ={g}_{mathrm{YM}}^2N is fixed. The coefficient of each order in the 1/N expansion can be expanded as a series of powers of λ that converges for |λ| < π2. For large λ this becomes an asymptotic series when expanded in powers of 1/sqrt{lambda } with coefficients that are again rational multiples of odd zeta values, in agreement with earlier results and providing new ones. We demonstrate that the large-λ series is not Borel summable, and determine its resurgent non-perturbative completion, which is Oleft(exp left(-2sqrt{lambda}right)right) .

Highlights

  • Yang-Mills coupling τ = θ/2π + 4πi/g2

  • We present a novel expression for an integrated correlation function of four superconformal primaries in SU(N ) N = 4 supersymmetric Yang-Mills (N = 4 SYM)

  • For any fixed value of N the correlator can be expressed as an infinite series of nonholomorphic Eisenstein series, E(s; τ, τ) with s ∈ Z, and rational coefficients that depend on the values of N and s

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Summary

Overview and outline

In this paper we will re-express the integrated correlator GN (τ, τ) as a two-dimensional lattice sum that makes manifest many of its properties for all values of N and τ Since this reformulation is based on a wealth of evidence concerning the structure of GN (τ, τ) in various limits, rather than being based on a mathematical derivation we present this in the form of a conjecture rather than a theorem: Conjecture. The integrated correlation function (1.2) of four superconformal primary operators in the stress tensor multiplet of N = 4 SU(N ) supersymmetric Yang-Mills theory is given by the lattice sum (m,n)∈Z2. This is a very powerful equation that relates the dependence on τ and the dependence on N , thereby providing powerful constraints on properties of the correlator, as will be discussed later in this paper

Outline
The localised integrated correlator
A comment on a possible mixing problem involving the Konishi operator
The instanton sectors
Assembling the S-dual correlator
Matching with Yang-Mills perturbation theory with finite N
Comparison with perturbation theory using the Laplace-difference equation
Comparison with one-loop and two-loop perturbation theory
The large-N expansion with fixed ’t Hooft coupling
Resurgence of the strong coupling expansion
The large-N expansion with fixed gYM
Large-N constraints from the Laplace-difference equation
A Non-holomorphic Eisenstein series
B Computing the one-instanton contribution
C Evaluation of the integrated correlator in perturbation theory
D Borel summation and median resummation
Median resummation at leading order in the ’t Hooft expansion
Full Text
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