1. Superdeformation in 35S
- Author
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T. Suzuki, Yuichi Hatsukawa, K. Kisamori, Yutaka Watanabe, Megumi Niikura, Hideo Harada, J. Takatsu, Hiroyuki Miya, Motoki Kobayashi, Kazuyoshi Furutaka, Atsushi Kimura, Takeshi Yamamoto, Shoji Nakamura, Shin'ichiro Michimasa, Masumi Oshima, Daisuke Suzuki, Eiji Ideguchi, Hiroki Nishibata, Ayumi Yagi, Yosuke Toh, Kotaro Shirotori, Takeshi Koike, Yoshikazu Hirayama, Susumu Shimoura, Shinsuke Ota, Fumito Kitatani, Mitsuo Koizumi, F. Azaiez, Motonobu Takaki, Rin Yokoyama, Shintaro Go, M. Sugawara, Yosuke Ito, Toshiyuki Shizuma, D. Verney, and I. Matea
- Subjects
Superdeformation ,Physics ,Light nucleus ,Atomic orbital ,Excited state ,SHELL model ,Atomic physics - Abstract
A rotational band from \(7/2^{ - }\) to \(19/2^{ - }\) was observed in ^35S. The half-life of the transition from the \(19/2^{ - }\) state to \(15/2^{ - }\) state was determined by using the residual Doppler shift of the \(\gamma \)-ray peak. The deduced half-life and the relative intensities of in-band transitions indicate the presence of superdeformed structure in ^35S. The shell model calculation showed that multi-particle multi-hole configurations including \(f_{7/2}\) orbitals are essential for superdeformation in ^35S.
- Published
- 2015
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