Isolating CP-violating \gamma ZZ coupling in e+e- \to \gamma Z with transverse beam polarizations
Abstract
We revisit the process at the ILC with transverse beam polarization in the presence of anomalous CP-violating coupling and coupling . We point out that if the final-state spins are resolved, then it becomes possible to fingerprint the anomalous coupling {\rm Re}.90% confidence level limit on {\rm Re} achievable at ILC with center-of-mass energy of 500 GeV or 800 GeV with realistic initial beam polarization and integrated luminosity is of the order of few times of when the helicity of is used and when the helicity of is used. The resulting corrections at quadratic order to the cross section and its influence on these limits are also evaluated and are shown to be small. The benefits of such polarization programmes at the ILC are compared and contrasted for the process at hand. We also discuss possible methods by which one can isolate events with a definite helicity for one of the final-state particles.
Keywords
Cite
@article{arxiv.1104.3645,
title = {Isolating CP-violating \gamma ZZ coupling in e+e- \to \gamma Z with transverse beam polarizations},
author = {B. Ananthanarayan and Sumit K. Garg and Monalisa Patra and Saurabh D. Rindani},
journal= {arXiv preprint arXiv:1104.3645},
year = {2015}
}
Comments
13 pages, 9 figures, using RevTex; v2 is a significantly revised version of v1, and corresponds to the version that has been published in Physical Review D