Measurement of the $HZ\gamma$ Coupling at the Future Linear \ee Collider
Abstract
We examine the prospects for measuring the coupling of a Standard Model-like Higgs boson with a mass between 120 and 160 GeV at the future TESLA linear \ee collider, assuming an integrated luminosity of 1 ab and a center-of-mass energy of 500 GeV. We consider the Higgs boson produced in association with via the fusion reaction , followed by the rare decay into a boson and a photon, . Accounting for all main background contributions, different selection procedures are discussed. Uncertainties on the \hZg branching fraction of approximately 48% (27%, 44%) can be achieved in unpolarised \ee collisions for = 120 (140, 160) GeV. With appropriate initial state polarisations BF(\hZg)/BF(\hZg), or the precisions on the \hZg partial width, can be improved to 29% (17%, 27%) and provide valuable information on the coupling. We regard our results as a convincing confirmation of the great potential of a linear collider to access and reliably measure important parameters of the Higgs boson despite initially overwhelming background with final state signature similar to the signal events.
Cite
@article{arxiv.hep-ph/0302250,
title = {Measurement of the $HZ\gamma$ Coupling at the Future Linear \ee Collider},
author = {M. Dubinin and H. J. Schreiber and A. Vologdin},
journal= {arXiv preprint arXiv:hep-ph/0302250},
year = {2011}
}
Comments
17 pages, 6 figures