High-spin yrast and yrare structures in 112In
Chun He, X. Q. Li, Li Zhu, Xinji Wu, Y. Liu, B. Pan, L. H. Li, Z. M. Wang, G. S. Li, Zeyu Li, S. Y. Wang, Qiang Xu, J. G. Wang, H. B. Ding, J. Zhai
Abstract
Open-access reader
Chun He, X. Q. Li, Li Zhu, Xinji Wu, Y. Liu, B. Pan, L. H. Li, Z. M. Wang, G. S. Li, Zeyu Li, S. Y. Wang, Qiang Xu, J. G. Wang, H. B. Ding, J. Zhai
Abstract
Open-access reader
The high-spin states of 112In have been investigated with in-beam $ \gamma$ -ray spectroscopic methods using the 110Pd (7Li, 5n)112In reaction at a beam energy of 50MeV. A level scheme with 3 band structures has been established. The backbending associated with the alignment of a pair of g 7/2/d 5/2 neutrons has been found in the negative-parity yrast band. The configuration for the positive-parity yrare band has been assigned to $ \pi$ g 9/2 ⊗ $ \nu$ g 7/2 for the lower-spin states, and $ \pi$ g 9/2 ⊗ $ \nu$ h 2 11/2(g 7/2) for the higher-spin levels.
OpenAlex reports 104 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
The high-spin states of 112In have been investigated with in-beam $ \gamma$ -ray spectroscopic methods using the 110Pd (7Li, 5n)112In reaction at a beam energy of 50MeV. A level scheme with 3 band structures has been established. The backbending associated with the alignment of a pair of g 7/2/d 5/2 neutrons has been found in the negative-parity yrast band. The configuration for the positive-parity yrare band has been assigned to $ \pi$ g 9/2 ⊗ $ \nu$ g 7/2 for the lower-spin states, and $ \pi$ g 9/2 ⊗ $ \nu$ h 2 11/2(g 7/2) for the higher-spin levels.
Key concepts: Yrast, Beam energy, Physics, Parity (physics), Spin (aerodynamics), Atomic physics, Neutron, Spin states