English

Grassmannian Integrals as Matrix Models for Non-Compact Yangian Invariants

High Energy Physics - Theory 2015-03-24 v2 Statistical Mechanics Mathematical Physics math.MP Exactly Solvable and Integrable Systems

Abstract

In the past years, there have been tremendous advances in the field of planar N=4 super Yang-Mills scattering amplitudes. At tree-level they were formulated as Grassmannian integrals and were shown to be invariant under the Yangian of the superconformal algebra psu(2,2|4). Recently, Yangian invariant deformations of these integrals were introduced as a step towards regulated loop-amplitudes. However, in most cases it is still unclear how to evaluate these deformed integrals. In this work, we propose that changing variables to oscillator representations of psu(2,2|4) turns the deformed Grassmannian integrals into certain matrix models. We exemplify our proposal by formulating Yangian invariants with oscillator representations of the non-compact algebra u(p,q) as Grassmannian integrals. These generalize the Brezin-Gross-Witten and Leutwyler-Smilga matrix models. This approach might make elaborate matrix model technology available for the evaluation of Grassmannian integrals. Our invariants also include a matrix model formulation of the u(p,q) R-matrix, which generates non-compact integrable spin chains.

Keywords

Cite

@article{arxiv.1412.8476,
  title  = {Grassmannian Integrals as Matrix Models for Non-Compact Yangian Invariants},
  author = {Nils Kanning and Yumi Ko and Matthias Staudacher},
  journal= {arXiv preprint arXiv:1412.8476},
  year   = {2015}
}

Comments

15 pages; v2: published version, minor changes including additional references

R2 v1 2026-06-22T07:46:21.940Z