arXiv · hep-ph/0405027
$P$-parity of charm and strange particles in electroproduction processes, in collinear regime
Abstract
We show that definite polarization observables for the simplest electroproduction processes, $\ell+N\to \ell+B(1/2^\pm)+M(0^\pm)$, $B=Y(Λ, Σ$ or $Y_c$-hyperon, $Θ^+$-pentaquark) and $M=K$, $\bar{K}$ or $D$, are sensitive to the relative P-parity $π(B)$ of the NBM-system. The interference of the longitudinal and transversal amplitudes for the collinear regime of the processes $γ^*+N\to B+M $($γ^*$ is the virtual photon) - at any value of momentum transfer squared and excitation energy of the $BM$-system - generates model independent relations between analyzing powers (in unpolarized lepton scattering by polarized target), from one side, and the components of the produced baryon $B$ polarization. It is important to stress that these relations depend on the above mentioned P-parity, and constitute a model independent method for the determination of unknown parities of strange and charm particles.
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Michail P. Rekalo, Egle Tomasi-Gustafsson. 2004-05-04. $P$-parity of charm and strange particles in electroproduction processes, in collinear regime. https://doi.org/10.1016/j.physletb.2004.08.037
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