arXiv · 1201.5598
Model-independent determination of the parity of $\Xi$ hyperons
Abstract
Based on reflection symmetry in the reaction plane, it is shown that measuring the transverse spin-transfer coefficient $K_{yy}$ in the $\bar{K}N \to K\Xi$ reaction directly determines the parity of the produced cascade hyperon in a model-independent way as $\pi_\Xi =K_{yy}$, where $\pi_\Xi =\pm 1$ is the parity. This result based on Bohr's theorem provides a completely general, universal relationship that applies to the entire hyperon spectrum. A similar expression is obtained for the photoreaction $\gamma N \to K K \Xi$ by measuring both the double-polarization observable $K_{yy}$ and the photon-beam asymmetry $\Sigma$. Regarding the feasibility of such experiments, it is pointed out that the self-analyzing property of the $\Xi$'s can be invoked, thus requiring only a polarized nucleon target.
Explore related subjects
Keep this discovery
K. Nakayama, Yongseok Oh, H. Haberzettl. 2012-01-26. Model-independent determination of the parity of $\Xi$ hyperons. https://doi.org/10.1103/physrevc.85.042201
Cite the original work for its findings. Save a collection to share your selection of sources.