Measurement of proton electromagnetic form factors in the time-like region using initial state radiation at BESIII
The electromagnetic process \(e^{+}e^{-}\to p\bar{p}\) is studied with the initial-state-radiation technique using 7.5 fb\(^{-1}\) of data collected by the BESIII experiment at seven energy points from 3.773 to 4.600 GeV. The Born cross section and the effective form factor of the proton are measure...
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20.02.2021
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Abstract | The electromagnetic process \(e^{+}e^{-}\to p\bar{p}\) is studied with the initial-state-radiation technique using 7.5 fb\(^{-1}\) of data collected by the BESIII experiment at seven energy points from 3.773 to 4.600 GeV. The Born cross section and the effective form factor of the proton are measured from the production threshold to 3.0 GeV/\(c^{2}\) using the \(p\bar{p}\) invariant-mass spectrum. The ratio of electric and magnetic form factors of the proton is determined from the analysis of the proton-helicity angular distribution. |
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AbstractList | The electromagnetic process $e^{+}e^{-}\to p\bar{p}$ is studied with the
initial-state-radiation technique using 7.5 fb$^{-1}$ of data collected by the
BESIII experiment at seven energy points from 3.773 to 4.600 GeV. The Born
cross section and the effective form factor of the proton are measured from the
production threshold to 3.0 GeV/$c^{2}$ using the $p\bar{p}$ invariant-mass
spectrum. The ratio of electric and magnetic form factors of the proton is
determined from the analysis of the proton-helicity angular distribution. The electromagnetic process \(e^{+}e^{-}\to p\bar{p}\) is studied with the initial-state-radiation technique using 7.5 fb\(^{-1}\) of data collected by the BESIII experiment at seven energy points from 3.773 to 4.600 GeV. The Born cross section and the effective form factor of the proton are measured from the production threshold to 3.0 GeV/\(c^{2}\) using the \(p\bar{p}\) invariant-mass spectrum. The ratio of electric and magnetic form factors of the proton is determined from the analysis of the proton-helicity angular distribution. |
Author | Liang, Y T Li, D M Wen, S P Fritsch, M Sun, Z T Hu, J F Xu, Q J Jiao, J B Shen, C P Destefanis, M Heinsius, F H Liang, Y F Zhao, Q Hou, G Y Li, Xiaoyu Liang, H Patteri, P Dai, H L Zhang, L Q Yuan, C Z Gao, Y Gao, Y G Larin, P Redmer, C F Yan, F Zhao, G Zhao, J Hüsken, N Dai, X C Cossio, F Schnier, C Chen, D Y G Li Li, C H Poling, R Xiao, S Y Yan, L Sun, J F Liu, Y Mangoni, A Liu, X Libby, J Liu, T Zhao, Ling Kühn, W Liu, Q Wang, W H Liu, L Briere, R A W Ikegami Andersson Jin, S Wang, W P Cibinetto, G H Li White, D J Jin, Y Ma, Q M Li, S Y Lou, X C Ping, J L T Hu Yu, J S Schelhaas, Y Zhang, S Zhang, Y Bertani, M Liu, K Wiedner, U Nefedov, Y Tang, G Y Liu, D Imoehl, W Kolcu, O B Liu, P L Ji, Q P Zhang, H Adlarson, P Wang, H P Wang, X F Yan, W B Du, S X Wang, X L Jaeger, S Liu, M H Zhang, J Q Collaboration, BESIII Zhang, J J Zhang, J L Z Wu Zhang, Lei Shao, M Cao, G F Sun, H K Zhang, Shulei Shangguan, J F You, Z Y Mitchell, R E Schoenning, K Wang, Y D Sun, Y J |
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BackLink | https://doi.org/10.48550/arXiv.2102.10337$$DView paper in arXiv https://doi.org/10.1016/j.physletb.2021.136328$$DView published paper (Access to full text may be restricted) |
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Snippet | The electromagnetic process \(e^{+}e^{-}\to p\bar{p}\) is studied with the initial-state-radiation technique using 7.5 fb\(^{-1}\) of data collected by the... The electromagnetic process $e^{+}e^{-}\to p\bar{p}$ is studied with the initial-state-radiation technique using 7.5 fb$^{-1}$ of data collected by the BESIII... |
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SubjectTerms | Angular distribution Form factors Helicity Physics - High Energy Physics - Experiment Protons |
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Title | Measurement of proton electromagnetic form factors in the time-like region using initial state radiation at BESIII |
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