Determination of the Jet Energy Scale at the Collider Detector at Fermilab
A. Bhatti, F. Canelli, B. Heinemann, J. Adelman, D. Ambrose, J. -F. Arguin, A. Barbaro-Galtieri, H. Budd, Y. S. Chung, K. Chung, B. Cooper, C. Currat, M. D'Onofrio, T. Dorigo, R. Erbacher, R. Field, G. Flanagan, A. Gibson, K. Hatakeyama, F. Happacher, D. Hoffman, G. Introzzi, S. Kuhlmann, S. Kwang, S. Jun, G. Latino, A. Malkus, M. Mattson, A. Mehta, P. A. Movilla-Fernandez, L. Nodulman, M. Paulini, J. Proudfoot, F. Ptohos, S. Sabik, W. Sakumoto, P. Savard, M. Shochet, P. Sinervo, V. Tiwari, A. Wicklund, G. Yun
Abstract
A precise determination of the energy scale of jets at the Collider Detector at Fermilab at the Tevatron pp collider is described. Jets are used in many analyses to estimate the energies of partons resulting from the underlying physics process. Several correction factors are developed to estimate the original parton energy from the observed jet energy in the calorimeter. The jet energy response is compared between data and Monte Carlo simulation for various physics processes, and systematic uncertainties on the jet energy scale are determined. For jets with transverse momenta above 50 GeV the jet energy scale is determined with a 3% systematic uncertainty.
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