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Instrumental uncertainties in radiative corrections for the MUSE experiment
by
Bernauer, J. C.
, Deiters, K.
, Lorenzon, W.
, Rostomyan, T.
, Nicol, M.
, Cline, E.
, Gilman, R.
, Patel, T.
, Downie, E. J.
, Lunkenheimer, S.
, Reimer, P. E.
, Nazeer, J.
, Ron, G.
, Ruimi, O. M.
, Briscoe, W. J.
, Cohen, D.
, Lavrukhin, I.
, Reid, H.
, Mohanmurthy, P.
, Yaari, D.
, Flannery, A.
, Lin, W.
, Strauch, S.
, Ndukwe, A. Christopher
, Kohl, M.
, Fernando, I. P.
, Ilieva, Y.
, Sparveris, N.
, Li, L.
, Prosnyakov, A.
in
Elastic and Compton scattering
/ Electromagnetic interactions
/ Photon and charged-lepton interactions with hadrons
2024
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Instrumental uncertainties in radiative corrections for the MUSE experiment
by
Bernauer, J. C.
, Deiters, K.
, Lorenzon, W.
, Rostomyan, T.
, Nicol, M.
, Cline, E.
, Gilman, R.
, Patel, T.
, Downie, E. J.
, Lunkenheimer, S.
, Reimer, P. E.
, Nazeer, J.
, Ron, G.
, Ruimi, O. M.
, Briscoe, W. J.
, Cohen, D.
, Lavrukhin, I.
, Reid, H.
, Mohanmurthy, P.
, Yaari, D.
, Flannery, A.
, Lin, W.
, Strauch, S.
, Ndukwe, A. Christopher
, Kohl, M.
, Fernando, I. P.
, Ilieva, Y.
, Sparveris, N.
, Li, L.
, Prosnyakov, A.
in
Elastic and Compton scattering
/ Electromagnetic interactions
/ Photon and charged-lepton interactions with hadrons
2024
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Instrumental uncertainties in radiative corrections for the MUSE experiment
by
Bernauer, J. C.
, Deiters, K.
, Lorenzon, W.
, Rostomyan, T.
, Nicol, M.
, Cline, E.
, Gilman, R.
, Patel, T.
, Downie, E. J.
, Lunkenheimer, S.
, Reimer, P. E.
, Nazeer, J.
, Ron, G.
, Ruimi, O. M.
, Briscoe, W. J.
, Cohen, D.
, Lavrukhin, I.
, Reid, H.
, Mohanmurthy, P.
, Yaari, D.
, Flannery, A.
, Lin, W.
, Strauch, S.
, Ndukwe, A. Christopher
, Kohl, M.
, Fernando, I. P.
, Ilieva, Y.
, Sparveris, N.
, Li, L.
, Prosnyakov, A.
in
Elastic and Compton scattering
/ Electromagnetic interactions
/ Photon and charged-lepton interactions with hadrons
2024
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Instrumental uncertainties in radiative corrections for the MUSE experiment
Journal Article
Instrumental uncertainties in radiative corrections for the MUSE experiment
2024
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Overview
The MUSE experiment at the Paul Scherrer Institute is measuring elastic lepton-proton scattering cross sections in a four-momentum transfer range from Q2 of approximately 0.002–0.08 GeV2 using positively and negatively charged electrons and muons. The extraction of the Born cross sections from the experimental data requires radiative corrections. Estimates of the instrumental uncertainties in those corrections have been made using the ESEPP event generator. The results depend in particular on the minimum lepton momentum that contributes to the experimental cross section and the fraction of events with hard initial-state radiation that is detected in the MUSE calorimeter and is excluded from the data. Furthermore, these results show that the angular-dependent instrumental uncertainties in radiative corrections to the electron cross section are less than 0.4% and are negligible for the muon cross section.
Publisher
Springer Nature
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