Theoretical predictions on polarization asymmetry for Drell-Yan process with spin-one deuteron and tensor-polarized structure function $b_1$
Abstract
We report recent theoretical progress on a polarization asymmetry in the proton-deuteron Drell-Yan process with a polarized-deuteron target and the tensor-polarized structure function . Experimental measurements are possible at JLab for and at Fermilab for the Drell-Yan process. First, we show a theoretical estimate for the proton-deuteron Drell-Yan asymmetry in the Fermilab-E1039 experiment. We evolved tensor-polarized parton distribution functions, which explain existing HERMES data, at GeV to the range of the Fermilab Drell-Yan measurements. Then, we predicted that the asymmetry is of the order of a few percent. The Drell-Yan experiment has an advantage to probe the tensor-polarized antiquark distributions, which were suggested by the HERMES experiment as a finite sum for (). Second, we predicted for the JLab experiment by the standard convolution model of the deuteron. Our theoretical structure function seems to be much different from the HERMES data. Furthermore, a significant distribution exists at very large () beyond the kinematical limit for the proton. Because the standard deuteron-model estimate is much different from the HERMES data, there could be an interesting development as a new hadron-physics field if future JLab data will be much different from our conventional prediction.
Keywords
Cite
@article{arxiv.1902.04712,
title = {Theoretical predictions on polarization asymmetry for Drell-Yan process with spin-one deuteron and tensor-polarized structure function $b_1$},
author = {S. Kumano and Qin-Tao Song},
journal= {arXiv preprint arXiv:1902.04712},
year = {2019}
}
Comments
6 pages, 4 figures; Proceedings of 23rd International Spin Physics Symposium (SPIN2018), 10-14 September, 2018; Ferrara, Italy