In this article, the odd-even differences of nuclear moment of inertia are systematically analyzed and calculated. The results show that when the odd nucleon is in high-j intruderorbit or in the lowest orbit from the spherical shell, the odd-even differences are very large. Besides, something new are found in our studies.
In the framework of Bohr model, the quantized Hamiltonian based on nuclear nonaxial octupole deformation is derived in the pararneter space, which is important to analyze the oscillating properties of atomic nucleus.
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