Triaxiality is significant for understanding low-lying states. The calculated electric quadrupole transition strengths of the SD band reproduce the experimental values appropriately. The SD band involves a K π =2 + side band due to the triaxiality. By the GCM calculation, an SD band was obtained just above the ground-state band. Basis wave functions were obtained by the energy variation with a constraint on the quadrupole deformation parameter β, while other quantities such as triaxiality γ were optimized by the energy variation.
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Low-energy states were calculated by the parity and angular momentum projection and the generator coordinate method (GCM). Superdeformed ( SD) states in 40 Ar have been studied using the deformed-basis antisymmetrized molecular dynamics. Taniguchi, Yasutaka Ikeda, Kiyomi Kanada-En'yo, Yoshiko Kimura, Masaaki Horiuchi, Hisashi Ideguchi, Eiji Cluster correlations which have oblate cluster enhance triaxiality in excited states. Different shapes of prolate 24 Mg and oblate 36 Ar clusters cause difference of triaxiality of total systems. The GCM obtain prolate superdeformed ( SD) states in 28 Si and triaxial normal-deformed (ND) states in 40 Ca, which contain prolate α- 24 Mg and triaxial α- 36 Ar cluster structure components, respectively.
Low-lying states in 28 Si and 40 Ca are obtained by the generator coordinate method (GCM), and the GCM basis are calculated by energy variations with constraints on quadrupole deformation parameter β and inter-cluster distance. Taniguchi, Yasutaka Kimura, Masaaki Kanada-En'yo, Yoshiko Horiuchi, HisashiĮffects of cluster correlations on triaxiality have been studied using the antisymmetrized molecular dynamics. International Nuclear Information System (INIS) Clustering correlations and triaxiality in the sd-shell region