Construction of Infrared Finite Observables in N=4 Super Yang-Mills Theory
L. V. Bork, D. I. Kazakov, G. S. Vartanov, and A. V. Zhiboedov

TL;DR
This paper details the calculation of infrared finite observables in N=4 super Yang-Mills theory, demonstrating explicit cancellation of divergences and providing analytical expressions for some inclusive cross-sections.
Contribution
It provides a comprehensive calculation of infrared finite observables in N=4 SYM, including real emission and splitting diagrams, with explicit divergence cancellation and analytical results.
Findings
Infrared divergences cancel in inclusive cross-sections
Finite parts of cross-sections are derived analytically
Dependence on external scale is discussed
Abstract
In this paper we give all the details of the calculation that we presented in our previous paper ArXiv:0908.0387 where the infrared structure of the MHV gluon amplitudes in the planar limit for super Yang-Mills theory was considered in the next-to-leading order of perturbation theory. Explicit cancellation of the infrared divergencies in properly defined inclusive cross-sections is demonstrated first in a toy model example of "conformal QED" and then in the real SYM theory. We give the full-length details both for the calculation of the real emission and for the diagrams with splitting in initial and final states. The finite parts for some inclusive differential cross-sections are presented in an analytical form. In general, contrary to the virtual corrections, they do not reveal any simple structure. An example of the finite part containing just the log…
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