论文标题

均等 - 转移$({}^{16} {\ rm o},{}^{16} {\ rm f}(0^ - ,{\ rm g.s。}))$反应作为ISOVECTOR $ 0^ - $ 0^ - $ nates natlei untice $ 0^ -

The parity-transfer $({}^{16}{\rm O},{}^{16}{\rm F}(0^-,{\rm g.s.}))$ reaction as a probe of isovector $0^-$ states in nuclei

论文作者

Dozono, M., Uesaka, T., Fukuda, N., Ichimura, M., Inabe, N., Kawase, S., Kisamori, K., Kiyokawa, Y., Kobayashi, K., Kobayashi, M., Kubo, T., Kubota, Y., Lee, C. S., Matsushita, M., Michimasa, S., Miya, H., Ohkura, A., Ota, S., Sagawa, H., Sakaguchi, S., Sakai, H., Sasano, M., Shimoura, S., Shindo, Y., Stuhl, L., Suzuki, H., Tabata, H., Takaki, M., Takeda, H., Tokieda, H., Wakasa, T., Yako, K., Yanagisawa, Y., Yasuda, J., Yokoyama, R., Yoshida, K., Zenihiro, J.

论文摘要

Parity-Transfer $({}^{16} {\ rm o},{}^{16} {\ rm f}(0^ - ,{\ rm g.s。}))$反应作为用于研究Isovector $ 0^ - $ State nucleie nuclei的新探针。 $ 0^ - $状态的性能对核物质倾斜度凝结的阈值密度进行了严格的测试。在弹丸中,利用$ 0^+ \ rightArrow 0^ - $转换,奇偶校验转移反应将内部平等性转移到目标核,从而产生对不自然 - 平等状态的独特敏感性。因此,$ 0^ - $状态的选择性高于迄今为止采用的其他反应。该探针应用于$ {}^{12} {\ rm b} $中的$ 0^ - $状态,通过$ {}^{}^{12} {\ rm c} {\ rm c}({}^{}^{16} {16} {\ rm o} {\ rm o} g.s。}))$反应$ 247〜 {\ rm mev/u} $。通过检测$ {}^{}^{16} {\ rm f} $ ejectile在衰减中产生的$ {}^{15} {\ rm o}+p $对来推断激发能谱。 $ e_x = 9.3〜 {\ rm mev} $的已知$ 0^ - $ state ph被观察到了前所未有的高信噪比。数据还揭示了$ 0^ - $状态的新候选人$ e_x = 6.6 \ pm 0.4 $和$ 14.8 \ pm 0.3〜 {\ rm mev} $。结果表明,通过平等转移反应,$ 0^ - $状态检测的高效率。

The parity-transfer $({}^{16}{\rm O},{}^{16}{\rm F}(0^-,{\rm g.s.}))$ reaction is presented as a new probe for investigating isovector $0^-$ states in nuclei. The properties of $0^-$ states provide a stringent test of the threshold density for pion condensation in nuclear matter. Utilizing a $0^+ \rightarrow 0^-$ transition in the projectile, the parity-transfer reaction transfers an internal parity to a target nucleus, resulting in a unique sensitivity to unnatural-parity states. Consequently, the selectivity for $0^-$ states is higher than in other reactions employed to date. The probe was applied to a study of the $0^-$ states in ${}^{12}{\rm B}$ via the ${}^{12}{\rm C}({}^{16}{\rm O},{}^{16}{\rm F}(0^-,{\rm g.s.}))$ reaction at $247~{\rm MeV/u}$. The excitation energy spectra were deduced by detecting the ${}^{15}{\rm O}+p$ pair produced in the decay of the ${}^{16}{\rm F}$ ejectile. A known $0^-$ state at $E_x = 9.3~{\rm MeV}$ was observed with an unprecedentedly high signal-to-noise ratio. The data also revealed new candidates of $0^-$ states at $E_x=6.6 \pm 0.4$ and $14.8 \pm 0.3~{\rm MeV}$. The results demonstrate the high efficiency of $0^-$ state detection by the parity-transfer reaction.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源