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    Examining the characteristics of chiral-parity violation in nuclear systems: Influence of triaxial deformation

    Y. Y. Wang (王媛媛)1,2,* and S. Q. Zhang (张双全)3,†

    • *Contact author: yywang@ncepu.edu.cn
    • †Contact author: sqzhang@pku.edu.cn

    Phys. Rev. C 112, 034334 – Published 26 September, 2025

    DOI: https://doi.org/10.1103/tkpd-sv11

    Abstract

    The influence of triaxial deformation γ on the characteristics of chiral-parity (ChP) violation in nuclear systems is investigated within the reflection-asymmetric triaxial particle rotor model. With γ deviating from 90∘, the energy degeneracy between the chiral doublets and between the parity doublets of the ChP quartet bands is gradually reduced. The selection rules of the electromagnetic transitions are found to be sensitive to the triaxial deformation γ. The angular momentum geometry for the ChP quartet bands, including the angular momentum components and the azimuthal plot, is analyzed for different γ.

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