Improved -jet Energy Correction for Searches at CDF
arXiv:1107.3026
Abstract
We present a method for improving the -jet energy resolution in order to improve the signal sensitivity in searches for particles decaying to a quark and anti- quark. A correction function is computed for individual jets, which combines information from the secondary vertex tagger, the offline tracking and standard calorimeter-based jet-energy reconstruction algorithm in order to provide a more accurate measurement of the true -quark energy. We apply the correction to Monte-Carlo-simulated jets in the process and find an improvement in both the mean and the resolution of the -jet energy with respect to the -quark energy. The correction improves the measured Higgs dijet invariant mass resolution from 15%(standard jet corrections) to 11%(improved jet corrections) in the Higgs mass range from 100 GeV/ - 150 GeV/. Using the corrected -jet energies instead of the standard calorimeter-based -jet energies results in a 9% improvement in the expected sensitivity for Higgs boson production cross section in the most sensitive search region of the analysis, which is two tagged jets and one charged central lepton.