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Celestial String Integrands & their Expansions

High Energy Physics - Theory 2024-08-06 v1

Abstract

We transform the one-loop four-point type I\mathrm{I} open superstring gluon amplitude to correlation functions on the celestial sphere including both the (non-)orientable planar and non-planar sector. This requires a Mellin transform with respect to the energies of the scattered strings, as well as to integrate over the open-string worldsheet moduli space. After accomplishing the former we obtain celestial string integrands with remaining worldsheet integrals Ψ(β)\Psi\left(\beta\right), where β\beta is related to the conformal scaling dimensions of the conformal primary operators under consideration. Employing an alternative approach of performing an α\alpha'-expansion of the open superstring amplitude first and Mellin transforming afterwards, we obtain a fully integrated expression, capturing the pole structure in the β\beta-plane. The same analysis is performed at tree-level yielding similar results. We conclude by solving Ψ(β)\Psi\left(\beta\right) for specific values of β\beta, consistently reproducing the results of the α\alpha'-expansion ansatz. In all approaches we find that the dependence on α\alpha' reduces to that of a simple overall factor of (α)β3\left(\alpha'\right)^{\beta-3} at loop and (α)β\left(\alpha'\right)^{\beta} at tree level, consistent with previous literature.

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Cite

@article{arxiv.2408.02609,
  title  = {Celestial String Integrands & their Expansions},
  author = {Daniel Bockisch},
  journal= {arXiv preprint arXiv:2408.02609},
  year   = {2024}
}

Comments

37 pages, 6 figures, 1 table