Entanglement and scattering in quantum electrodynamics: S-matrix information from an entangled spectator particle
Abstract
We consider a general quantum field relativistic scattering involving two half spin fermions, and , which are initially entangled with another fermion that does not participate in the scattering dynamics. We construct general expressions for the reduced spin matrices for the out-state considering a general tripartite spin-entangled state. In particular we study an inelastic QED process at tree-level, namely and a half spin fermion as an spectator particle which can be entangled to the system in the following ways: W state, GHZ state, and , where are the Bell basis states and is a spin superposition state of system . We calculate the von-Neumann entropy variation before and after the scattering for the particle and show that spin measurements in contain numerical information about the total cross section of the process. We compare the initial states W and GHZ as well as study the role played by the parameter in the evaluation of the entropy variations and the cross section encoded in the spectator particle.
Keywords
Cite
@article{arxiv.2112.01300,
title = {Entanglement and scattering in quantum electrodynamics: S-matrix information from an entangled spectator particle},
author = {Juan D. Fonseca and B. Hiller and J. B. Araujo and I. G. da Paz and Marcos Sampaio},
journal= {arXiv preprint arXiv:2112.01300},
year = {2022}
}
Comments
12 pages, 10 figures