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Chiral geometry of higher excited bands in triaxial nuclei with particle-hole configuration

Published 28 Aug 2010 in nucl-th | (1008.4865v1)

Abstract: The lowest six rotational bands have been studied in the particle-rotor model with the particle-hole configuration $\pi h1_{11/2}\otimes\nu h{-1}_{11/2}$ and different triaxiality parameter $\gamma$. Both constant and spin-dependent variable moments of inertial (CMI and VMI) are introduced. The energy spectra, electromagnetic transition probabilities, angular momentum components and $K$-distribution have been examined. It is shown that, besides the band 1 and band 2, the predicted band 3 and band 4 in the calculations of both CMI and VMI for atomic nuclei with $\gamma=30\circ$ could be interpreted as chiral doublet bands.

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