English

Proton Form Factor Ratio, $\mu_p G_E^p/G_M^p$ from Double Spin Asymmetry

Nuclear Experiment 2020-03-25 v2

Abstract

The ratio of the electric and magnetic form factor of the proton, μpGEp/GMp\mu_p G_E^p/G_M^p, has been measured for elastic electron-proton scattering with polarized beam and target up to four-momentum transfer squared, Q2=5.66Q^2=5.66 (GeV/c)2^2 using the double spin asymmetry for target spin orientation aligned nearly perpendicular to the beam momentum direction. This measurement of μpGEp/GMp\mu_p G_E^p/G_M^p agrees with the Q2Q^2 dependence of previous recoil polarization data and reconfirms the discrepancy at high Q2Q^2 between the Rosenbluth and the polarization-transfer method with a different measurement technique and systematic uncertainties uncorrelated to those of the recoil-polarization measurements. The form factor ratio at Q2Q^2=2.06 (GeV/c)2^2 has been measured as μpGEp/GMp=0.720±0.176stat±0.039sys\mu_p G_E^p/G_M^p = 0.720 \pm 0.176_{stat} \pm 0.039_{sys}, which is in agreement with an earlier measurement with the polarized target technique at similar kinematics. The form factor ratio at Q2Q^2=5.66 (GeV/c)2^2 has been determined as μpGEp/GMp=0.244±0.353stat±0.013sys\mu_p G_E^p/G_M^p=0.244\pm0.353_{stat}\pm0.013_{sys}, which represents the highest Q2Q^2 reach with the double spin asymmetry with polarized target to date.

Keywords

Cite

@article{arxiv.1806.11156,
  title  = {Proton Form Factor Ratio, $\mu_p G_E^p/G_M^p$ from Double Spin Asymmetry},
  author = {A. Liyanage and W. Armstrong and H. Kang and J. Maxwell and J. Mulholland and L. Ndukum and A. Ahmidouch and I. Albayrak and A. Asaturyan and O. Ates and H. Baghdasaryan and W. Boeglin and P. Bosted and E. Brash and C. Butuceanu and M. Bychkov and P. Carter and C. Chen and J-P. Chen and S. Choi and E. Christy and S. Covrig and D. Crabb and S. Danagoulian and A. Daniel and A. M. Davidenko and B. Davis and D. Day and W. Deconinck and A. Deur and J. Dunne and D. Dutta and L. El Fassi and M. Elaasar and C. Ellis and R. Ent and D. Flay and E. Frlez and D. Gaskell and O. Geagla and J. German and R. Gilman and T. Gogami and J. Gomez and Y. M. Goncharenko and O. Hashimoto and D. Higinbotham and T. Horn and G. M. Huber and M. Jones and M. K. Jones and N. Kalantarians and H-K. Kang and D. Kawama and C. Keppel and M. Khandaker and Y. Kim and P. M. King and M. Kohl and K. Kovacs and V. Kubarovsky and Y. Li and N. Liyanage and V. Mamyan and P. Markowitz and T. Maruta and Y. M. Melnik and Z-E. Meziani and A. Mkrtchyan and H. Mkrtchyan and V. V. Mochalov and P. Monaghan and A. Narayan and S. N. Nakamura and Nuruzzaman and L. Pentchev and D. Pocanic and M. Posik and A. Puckett and X. Qiu and J. Reinhold and S. Riordan and J. Roche and O. A. Rondo'n and B. Sawatzky and M. Shabestari and K. Slifer and G. Smith and L. F. Soloviev and P. Solvignon and V. Tadevosyan and L. Tang and A. N. Vasiliev and M. Veilleux and T. Walton and F. Wesselmann and S. A. Wood and H. Yao and Z. Ye and L. Zhu},
  journal= {arXiv preprint arXiv:1806.11156},
  year   = {2020}
}