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February 8, 2026Journal of High Energy Physics2 citationsOpen Access

Geometric building blocks of effective field theory amplitudes

TCTimothy CohenEuropean Organization for Nuclear ResearchXLXu-Xiang LiUniversity of UtahZZZhengkang ZhangUniversity of Utah

Key Points

  • This research investigates the geometric structures underlying on-shell amplitudes in effective field theories.
  • Present a unified perspective on geometry of target and field configuration manifolds.
  • Identify vertices for constructing tree-level amplitudes.
  • Define a metric on the field configuration manifold for easier amplitude expressions.
  • Establish a connection between field space geometry and functional geometry.
  • Demonstrate that identified vertices transform covariantly in specific limits.

Abstract

A bstract On-shell amplitudes are invariant under field redefinitions. Nonderivative field redefinitions have a natural interpretation as coordinate transformations on the target manifold. General field redefinitions, which may involve derivatives, can be viewed as coordinate transformations on the field configuration manifold. We present a unified perspective for the geometry of both the target manifold and the field configuration manifold for scalar effective field theories. In both cases, we identify vertices that can be used to build the tree-level amplitudes, with the property that they transform covariantly in the vacuum and on-shell limits. We identify a choice of metric on the field configuration manifold, for which amplitude expressions on the target manifold can be easily reproduced from their counterparts on the field configuration manifold. This clarifies the relation between the well-established framework of field space geometry and recent proposals for functional geometry.

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Cite This Study

Cohen et al. (2026) studied this question.

synapsesocial.com/papers/698828850fc35cd7a884815chttps://doi.org/10.1007/jhep02(2026)076
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