English

Single Spin Asymmetries of Inclusive Hadrons Produced in Electron Scattering from a Transversely Polarized $^3$He Target

Nuclear Experiment 2014-04-08 v2 High Energy Physics - Experiment

Abstract

We report the first measurement of target single-spin asymmetries (AN_N) in the inclusive hadron production reaction, e e~+ 3Heh+X~^3\text{He}^{\uparrow}\rightarrow h+X, using a transversely polarized 3^3He target. The experiment was conducted at Jefferson Lab in Hall A using a 5.9-GeV electron beam. Three types of hadrons (π±\pi^{\pm}, K±\text{K}^{\pm} and proton) were detected in the transverse hadron momentum range 0.54 <pT<<p_T< 0.74 GeV/c. The range of xFx_F for pions was -0.29 <xF<<x_F< -0.23 and for kaons -0.25 <xF<<x_F<-0.18. The observed asymmetry strongly depends on the type of hadron. A positive asymmetry is observed for π+\pi^+ and K+\text{K}^+. A negative asymmetry is observed for π\pi^{-}. The magnitudes of the asymmetries follow Aπ<Aπ+<AK+|A^{\pi^-}| < |A^{\pi^+}| < |A^{K^+}|. The K^{-} and proton asymmetries are consistent with zero within the experimental uncertainties. The π+\pi^{+} and π\pi^{-} asymmetries measured for the 3^3He target and extracted for neutrons are opposite in sign with a small increase observed as a function of pTp_T.

Keywords

Cite

@article{arxiv.1311.1866,
  title  = {Single Spin Asymmetries of Inclusive Hadrons Produced in Electron Scattering from a Transversely Polarized $^3$He Target},
  author = {K. Allada and Y. X. Zhao and K. Aniol and J. R. M. Annand and T. Averett and F. Benmokhtar and W. Bertozzi and P. C. Bradshaw and P. Bosted and A. Camsonne and M. Canan and G. D. Cates and C. Chen and J. -P. Chen and W. Chen and K. Chirapatpimol and E. Chudakov and E. Cisbani and J. C. Cornejo and F. Cusanno and M. Dalton and W. Deconinck and C. W. de Jager and R. De Leo and X. Deng and A. Deur and H. Ding and P. A. M. Dolph and C. Dutta and D. Dutta and L. El Fassi and S. Frullani and H. Gao and F. Garibaldi and D. Gaskell and S. Gilad and R. Gilman and O. Glamazdin and S. Golge and L. Guo and D. Hamilton and O. Hansen and D. W. Higinbotham and T. Holmstrom and J. Huang and M. Huang and H. F Ibrahim and M. Iodice and X. Jiang and G. Jin and M. K. Jones and J. Katich and A. Kelleher and W. Kim and A. Kolarkar and W. Korsch and J. J. LeRose and X. Li and Y. Li and R. Lindgren and N. Liyanage and E. Long and H. -J. Lu and D. J. Margaziotis and P. Markowitz and S. Marrone and D. McNulty and Z. -E. Meziani and R. Michaels and B. Moffit and C. Munoz Camacho and S. Nanda and A. Narayan and V. Nelyubin and B. Norum and Y. Oh and M. Osipenko and D. Parno and J. -C. Peng and S. K. Phillips and M. Posik and A. J. R. Puckett and X. Qian and Y. Qiang and A. Rakhman and R. Ransome and S. Riordan and A. Saha and B. Sawatzky and E. Schulte and A. Shahinyan and M. H. Shabestari and S. Sirca and S. Stepanyan and R. Subedi and V. Sulkosky and L. -G. Tang and A. Tobias and G. M. Urciuoli and I. Vilardi and K. Wang and Y. Wang and B. Wojtsekhowski and X. Yan and H. Yao and Y. Ye and Z. Ye and L. Yuan and X. Zhan and Y. Zhang and Y. -W. Zhang and B. Zhao and X. Zheng and L. Zhu and X. Zhu and X. Zong},
  journal= {arXiv preprint arXiv:1311.1866},
  year   = {2014}
}

Comments

Updated version, submitted to Phys. Rev. C