Validation of the ^{10}Be Ground-State Molecular Structure Using ^{10}Be(p,pα)^{6}He Triple Differential Reaction Cross-Section Measurements.

P J Li,D Beaumel,J Lee, M Assié,S Chen, S Franchoo, J Gibelin, F Hammache, T Harada, Y Kanada-En'yo,Y Kubota, S Leblond, P F Liang, T Lokotko, M Lyu,F M Marqués, Y Matsuda, K Ogata,H Otsu, E Rindel, L Stuhl, D Suzuki,Y Togano, T Tomai, X X Xu, K Yoshida, J Zenihiro,N L Achouri, T Aumann, H Baba, G Cardella, S Ceruti, A I Stefanescu, A Corsi, A Frotscher, J Gao, A Gillibert, K Inaba, T Isobe,T Kawabata, N Kitamura, T Kobayashi, Y Kondo, A Kurihara, H N Liu, H Miki,T Nakamura,A Obertelli,N A Orr, V Panin, M Sasano, T Shimada,Y L Sun, J Tanaka, L Trache,D Tudor, T Uesaka,H Wang, H Yamada,Z H Yang, M Yasuda

Physical review letters(2023)

引用 0|浏览11
暂无评分
摘要
The cluster structure of the neutron-rich isotope ^{10}Be has been probed via the (p,pα) reaction at 150  MeV/nucleon in inverse kinematics and in quasifree conditions. The populated states of ^{6}He residues were investigated through missing mass spectroscopy. The triple differential cross section for the ground-state transition was extracted for quasifree angle pairs (θ_{p},θ_{α}) and compared to distorted-wave impulse approximation reaction calculations performed in a microscopic framework using successively the Tohsaki-Horiuchi-Schuck-Röpke product wave function and the wave function deduced from antisymmetrized molecular dynamics calculations. The remarkable agreement between calculated and measured cross sections in both shape and magnitude validates the molecular structure description of the ^{10}Be ground-state, configured as an α-α core with two valence neutrons occupying π-type molecular orbitals.
更多
查看译文
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要