Back to Search Start Over

Comparison of recoil polarization in the $^{12}{\rm C}(\vec{e},{e}'\vec{p})$ process for protons extracted from $s$ and $p$ shell

Authors :
Kolar, T.
Paul, S.
Brecelj, T.
Achenbach, P.
Böhm, R.
Bosnar, D.
Cohen, E. O.
Distler, M. O.
Esser, A.
Giusti, C.
Hoek, M.
Izraeli, D.
Kegel, S.
Kohl, Y.
Korover, I.
Lichtenstadt, J.
Mardor, I.
Merkel, H.
Mihovilovič, M.
Müller, J.
Müller, U.
Olivenboim, M.
Piasetzky, E.
Pochodzalla, J.
Schlimme, B. S.
Sfienti, C.
Širca, S.
Spreckels, R.
Štajner, S.
Thiel, M.
Weber, A.
Yaron, I.
Publication Year :
2020

Abstract

We present first measurements of the double ratio of the polarization transfer components $(P^{\prime}_{\!x} \!/ P^{\prime}_{\!z} )_p/ (P^{\prime}_{\!x} \!/ P^{\prime}_{\!z} )_s$ for knock-out protons from $s$ and $p$ shells in $^{12}{\rm C}$ measured by the $^{12}{\rm C}(\vec{e},{e}'\vec{p}\,)$ reaction in quasi-elastic kinematics. The data are compared to theoretical predictions in relativistic distorted-wave impulse approximation. Our results show that differences between $s$- and $p$-shell protons, observed when compared at the same initial momentum (missing momentum) largely disappear when the comparison is done at the same proton virtuality. We observe no density-dependent medium modifications for protons from $s$ and $p$ shells with the same virtuality in spite of the large differences in the respective nuclear densities.

Subjects

Subjects :
Nuclear Experiment

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2007.14985
Document Type :
Working Paper
Full Text :
https://doi.org/10.1016/j.physletb.2020.135903