2003arXiv (Cornell University)Open access

On the physical significance of q-deformation to isovector pairing interactions in nuclei

Sviratcheva, K. D., Bahri, C., Georgieva, A. I., Draayer, J. P.

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Abstract

The quantum deformation concept is applied to a study of isovector pairing correlations in nuclei of the mass 40 1) limit of the theory provides a reasonable global estimate for strength parameters of the pairing interaction, the results show that the q-deformation plays a significant role in understanding higher-order effects in the interaction.

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The quantum deformation concept is applied to a study of isovector pairing correlations in nuclei of the mass 40 1) limit of the theory provides a reasonable global estimate for strength parameters of the pairing interaction, the results show that the q-deformation plays a significant role in understanding higher-order effects in the interaction.

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Available abstract

The quantum deformation concept is applied to a study of isovector pairing correlations in nuclei of the mass 40 1) limit of the theory provides a reasonable global estimate for strength parameters of the pairing interaction, the results show that the q-deformation plays a significant role in understanding higher-order effects in the interaction.

Key concepts: Isovector, Pairing, Physics, Deformation (meteorology), Quantum, Statistical physics, Quantum mechanics, Nuclear physics

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