The Ultraviolet Structure of Half-Maximal Supergravity with Matter Multiplets at Two and Three Loops
Zvi Bern, Scott Davies, Tristan Dennen

TL;DR
This paper computes two- and three-loop amplitudes in half-maximal supergravity with matter, revealing divergences that challenge existing superspace finiteness conjectures and linking divergences to non-supersymmetric Yang-Mills theory.
Contribution
It provides explicit divergence calculations at two and three loops, contradicting previous conjectures about finiteness based on off-shell superspace assumptions.
Findings
New divergences occur in D=4 and D=5 at two and three loops.
Divergences are related to non-supersymmetric Yang-Mills theory with scalars.
Results challenge existing superspace finiteness predictions.
Abstract
Using the duality between color and kinematics, we construct the two- and three-loop amplitudes of half-maximal supergravity with matter multiplets and show that new divergences occur in D=4 and D=5. Bossard, Howe and Stelle have recently conjectured the existence of 16-supercharge off-shell harmonic superspaces in order to explain the ultraviolet finiteness of pure half-maximal supergravity with no matter multiplets in D=4 at three loops and in D=5 at two loops. By assuming the required superspace exists in D=5, they argued that no new divergences should occur at two loops even with the addition of abelian-vector matter multiplets. Up to possible issues with the SL(2,R) global anomaly of the theory, they reached a similar conclusion in D=4 for two and three loops. The divergences we find contradict these predictions based on the existence of the desired off-shell superspaces.…
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