arXiv:hep-ph/0011366·v1·High Energy Physics — Phenomenology
Measuring the Higgs Branching Fraction into two Photons at Future Linear \ee Colliders
E. Boos (Moscow State University) · J.-C. Brient (Ecole Polytechnique) · D.W. Reid (NIKHEF) · H.J. Schreiber (DESY Zeuthen) · R.Shanidze (Tbilisi State University)
Abstract
We examine the prospects for measuring the \gaga branching fraction of a Standard Model-like Higgs boson with a mass of 120 GeV at the future TESLA linear \ee collider, assuming an integrated luminosity of 1 ab and center-of-mass energies of 350 GeV and 500 GeV. The Higgs boson is produced in association with a fermion pair via the Higgsstrahlung process \ee , with \qq or \nn, or the WW fusion reaction . A relative uncertainty on BF(\hgg) of~16% can be achieved in unpolarized \ee collisions at =~500 GeV, while for =~350 GeV the expected precision is slightly poorer. With appropriate initial state polarizations BF(\hgg)/BF(\hgg) can be improved to 10%. If this measurement is combined with the expected error for the total Higgs width, a precision of 10% on the \gaga Higgs boson partial width appears feasible.
Comments: 14 pages, 5 figures