1. Transverse asymmetry of individual $\gamma$-rays in the $^{139}$La($\vec{n}$, $\gamma$)$^{140}$La reaction
- Author
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Okuizumi, M., Auton, C. J., Endo, S., Fujioka, H., Hirota, K., Ino, T., Ishizaki, K., Kimura, A., Kitaguchi, M., Koga, J., Makise, S., Niinomi, Y., Oku, T., Okudaira, T., Sakai, K., Shima, T., Shimizu, H. M., Tada, H., Takada, S., Takahashi, S., Tani, Y., Yamamoto, T., Yoshikawa, H., and Yoshioka, T.
- Subjects
Nuclear Experiment - Abstract
The enhancement of the parity-violating asymmetry in the vicinity of $p$-wave compound nuclear resonances was observed for a variety of medium-heavy nuclei. The enhanced parity-violating asymmetry can be understood using the $s$-$p$ mixing model. The $s$-$p$ mixing model predicts several neutron energy-dependent angular correlations between the neutron momentum $\vec k_n$, neutron spin $\vec\sigma_n$, $\gamma$-ray momentum $\vec k_\gamma$, and $\gamma$-ray polarization $\vec\sigma_\gamma$ in the $(n,\gamma)$ reaction. In this paper, the improved value of the transverse asymmetry of $\gamma$-ray emissions, corresponding to a correlation term $\vec{\sigma}_n\cdot(\vec k_n\times\vec k_\gamma)$ in the $^{139}\mathrm{La}(\vec n,\gamma)^{140}\mathrm{La}$ reaction, and the transverse asymmetries in the transitions to several low excited states of $^{140}\mathrm{La}$ are reported., Comment: 5 pages, 5 figures, 2 tables
- Published
- 2024