A Celestial Description of Planar Super‑Yang-Mills Theory

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1. Verfasser: Mol, Igor
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Veröffentlicht: Zenodo 2025
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author Mol, Igor
author_facet Mol, Igor
contents <div>We extend the celestial Roiban‑Spradlin‑Volovich‑Witten (RSVW) formalism developed in our previous work to minitwistor superspace. Using the Drummond‑Henn formula for all tree‑level amplitudes in N = 4 supersymmetric Yang‑Mills (SYM) theory, we construct tree‑level N k ‑MHV celestial leaf amplitudes and show that their minitwistor‑Fourier transforms are given by integrals over moduli spaces of families of minitwistor lines. We also adapt the Korchemsky‑Sokatchev twistor‑transform techniques for gluon amplitudes to the minitwistor‑Fourier transforms of leaf amplitudes. We then describe two dynamical formulations of these celestial amplitudes. First, we show that semiclassical correlators of Wilson operators supported on algebraic cycles in minitwistor superspace act as generating functionals for tree‑level N k ‑MHV leaf‑gluon amplitudes. Second, we analyse a semiclassical minitwistor sigma model, identify its vertex operators, and construct from them celestial gluon operators that close on the S ‑algebra in the semiclassical approximation; their leading‑trace semiclassical correlators again reproduce the tree‑level N k ‑MHV leaf amplitudes. A companion paper extends this construction beyond tree level, in particular to one‑loop amplitudes via a celestial version of the Brandhuber‑Spence‑Travaglini formalism.</div>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_17786068
institution Zenodo
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publishDate 2025
publisher Zenodo
record_format zenodo
spellingShingle A Celestial Description of Planar Super‑Yang-Mills Theory
Mol, Igor
<div>We extend the celestial Roiban‑Spradlin‑Volovich‑Witten (RSVW) formalism developed in our previous work to minitwistor superspace. Using the Drummond‑Henn formula for all tree‑level amplitudes in N = 4 supersymmetric Yang‑Mills (SYM) theory, we construct tree‑level N k ‑MHV celestial leaf amplitudes and show that their minitwistor‑Fourier transforms are given by integrals over moduli spaces of families of minitwistor lines. We also adapt the Korchemsky‑Sokatchev twistor‑transform techniques for gluon amplitudes to the minitwistor‑Fourier transforms of leaf amplitudes. We then describe two dynamical formulations of these celestial amplitudes. First, we show that semiclassical correlators of Wilson operators supported on algebraic cycles in minitwistor superspace act as generating functionals for tree‑level N k ‑MHV leaf‑gluon amplitudes. Second, we analyse a semiclassical minitwistor sigma model, identify its vertex operators, and construct from them celestial gluon operators that close on the S ‑algebra in the semiclassical approximation; their leading‑trace semiclassical correlators again reproduce the tree‑level N k ‑MHV leaf amplitudes. A companion paper extends this construction beyond tree level, in particular to one‑loop amplitudes via a celestial version of the Brandhuber‑Spence‑Travaglini formalism.</div>
title A Celestial Description of Planar Super‑Yang-Mills Theory
url https://doi.org/10.5281/zenodo.17786068