English

Weinberg Soft Theorems from Weinberg Adiabatic Modes

High Energy Physics - Theory 2016-02-18 v1 Cosmology and Nongalactic Astrophysics

Abstract

Soft theorems for the scattering of low energy photons and gravitons and cosmological consistency conditions on the squeezed-limit correlation functions are both understood to be consequences of invariance under large gauge transformations. We apply the same method used in cosmology -- based on the identification of an infinite set of "adiabatic modes" and the corresponding conserved currents -- to derive flat space soft theorems for electrodynamics and gravity. We discuss how the recent derivations based on the asymptotic symmetry groups (BMS) can be continued to a finite size sphere surrounding the scattering event, when the soft photon or graviton has a finite momentum. We give a finite distance derivation of the antipodal matching condition previously imposed between future and past null infinities, and explain why all but one radiative degrees of freedom decouple in the soft limit. In contrast to earlier works on BMS, we work with adiabatic modes which correspond to large gauge transformations that are rr-dependent.

Keywords

Cite

@article{arxiv.1602.05196,
  title  = {Weinberg Soft Theorems from Weinberg Adiabatic Modes},
  author = {Mehrdad Mirbabayi and Marko Simonović},
  journal= {arXiv preprint arXiv:1602.05196},
  year   = {2016}
}

Comments

27+16

R2 v1 2026-06-22T12:51:43.299Z