-channel singularities in cosmology and particle physics
arXiv:2108.01757 · doi:10.1016/j.nuclphysb.2022.115967
Abstract
The -channel singularity of a cross-section for a binary scattering process occurs when a particle exchanged in the channel is kinematically allowed to be on its mass-shell, that is when the process can be viewed as a sequence of two physical subprocesses: a two-body decay and an inverse decay . We derive conditions for the singularity to be present in a binary process. A class of divergent cross sections for Standard Model processes has been determined and illustrated by the weak analog of the Compton scattering . After critically reviewing regularization methods proposed in literature, we discuss singular processes which occur in a medium composed of particles in thermal equilibrium. The medium is shown to regulate the singularities naturally as particles acquire a finite width. We demonstrate a possible cosmological application by calculating thermally averaged cross section for an elastic scattering within a simple scalar model. The cross section, which is divergent in vacuum, becomes finite when the process occurs in a thermal bath due to the imaginary self-energy of the -channel mediator computed within the Keldysh-Schwinger formalism.
6 pages, 4 figures; v2: refs. 9-10 and par. above fig. 3 added + minor changes; v3: fig. 4 corrected
References in corpus (4)
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