English

The symbol and alphabet of two-loop NMHV amplitudes from $\bar{Q}$ equations

High Energy Physics - Theory 2021-04-14 v2

Abstract

We study the symbol and the alphabet for two-loop NMHV amplitudes in planar N=4{\cal N}=4 super-Yang-Mills from the Qˉ\bar{Q} equations, which provide a first-principle method for computing multi-loop amplitudes. Starting from one-loop N2{}^2MHV ratio functions, we explain in detail how to use Qˉ\bar{Q} equations to obtain the total differential of two-loop nn-point NMHV amplitudes, whose symbol contains letters that are algebraic functions of kinematics for n8n\geq 8. We present explicit formula with nice patterns for the part of the symbol involving algebraic letters for all multiplicities, and we find 172m17-2m multiplicative-independent letters for a given square root of Gram determinant, with 0m40\leq m\leq 4 depending on the number of particles involved in the square root. We also observe that these algebraic letters can be found as poles of one-loop four-mass leading singularities with MHV or NMHV trees. As a byproduct of our algebraic results, we find a large class of components of two-loop NMHV, which can be written as differences of two double-pentagon integrals, particularly simple and absent of square roots. As an example, we present the complete symbol for n=9n=9 whose alphabet contains 59×959\times 9 rational letters, in addition to the 11×911 \times 9 independent algebraic ones. We also give all-loop NMHV last-entry conditions for all multiplicities.

Keywords

Cite

@article{arxiv.2009.11471,
  title  = {The symbol and alphabet of two-loop NMHV amplitudes from $\bar{Q}$ equations},
  author = {Song He and Zhenjie Li and Chi Zhang},
  journal= {arXiv preprint arXiv:2009.11471},
  year   = {2021}
}

Comments

33 pages, 1 figure, revised version, typo corrected, accepted in JHEP