Self-dual effective action of N = 4 SYM revisited
S. M. Kuzenko

TL;DR
This paper provides two-loop quantum corrections to the N=4 SYM effective action, confirming its self-duality and matching D3-brane action coefficients, using harmonic superspace and background-field quantization.
Contribution
It computes the two-loop correction to the N=4 SYM effective action in harmonic superspace, supporting self-duality conjectures and matching D3-brane action coefficients.
Findings
Two-loop correction proportional to (F^+)^2 |Y|^{-4}
Agreement with D3-brane F^6 coefficient after field redefinition
Supports self-duality of N=4 SYM effective action
Abstract
More evidence is provided for the conjectured correspondence between the D3-brane action in AdS_5 x S^5 and the low-energy effective action for N = 4 SU(N) SYM on its Coulomb branch, where the gauge group SU(N) is spontaneously broken to SU(N-1) x U(1) and the dynamics is described by a single N = 2 vector multiplet corresponding to the U(1) factor of the unbroken group. Using an off-shell formulation for N = 4 SYM in N = 2 harmonic superspace, within the background-field quantization scheme we compute the two-loop quantum correction to a holomorphic sector of the effective action, which is a supersymmetric completion of interactions of the form \Omega ((F^+)^2 |Y|^{-4}) (F^+)^2(F^-)^2 |Y|^{-4}, with F^\pm the (anti) self-dual components of the U(1) gauge field strength, and Y the complex scalar belonging to the vector multiplet. In the one-loop approximation, \Omega was shown in…
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