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October 11, 2025Journal of High Energy Physics14 citationsOpen Access

All-order splits and multi-soft limits for particle and string amplitudes

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NANima Arkani–HamedCFCarolina Figueiredo

Key Points

  • New split factorizations reveal deeper relationships in scattering amplitudes that extend beyond traditional poles.
  • The exploration focuses on Tr(Φ 3 ) theory and introduces multi-soft limits and factorization at all loop orders.
  • This method enhances understanding of particle and string amplitudes through geometric properties of surfaces.
  • These findings suggest broader implications for the computation of loop-integrated limits in quantum field theories.

Abstract

A bstract The most important aspects of scattering amplitudes have long been thought to be associated with their poles. But recently a very different sort of “split” factorizations for a wide range of particle and string tree amplitudes have been discovered away from poles. In this paper, we give a simple, conceptual origin for these splits arising from natural properties of the binary geometry of the curve integral formulation for scattering amplitudes for Tr(Φ 3 ) theory. The most natural way of “joining” smaller surfaces to build larger ones directly produces a choice of kinematics for which higher amplitudes factor into lower ones. This gives a generalization of splits to all orders in the topological expansion. These splits allow us to access and compute loop-integrated multi-soft limits for particle and string amplitudes, at all loop orders. This includes split factorizations and multisoft limits for pion and gluon amplitudes, that are related to Tr(Φ 3 ) theory by a simple kinematical shift.

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Cite This Study

Arkani–Hamed et al. (2025) studied this question.

synapsesocial.com/papers/68e9b2e4ba7d64b6fc133109https://doi.org/10.1007/jhep10(2025)077
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