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July 18, 2019Open Access

Nuclear Magic Numbers and the Chemical Closure Limit: Zero-Parameter Derivation from M3(C) Automorphism Structure in Cognitional Mechanics

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Authors

ITI. Tanihata

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Overview

New paradigm explains magic numbers in neutron-rich nuclei, suggesting tensor interactions block binding energy.

Key Points

  • This research aims to propose a new framework for understanding nuclear structure through tensor interactions and blocking effects.
  • Introduction of a new paradigm for nuclear structure focusing on tensor interactions.
  • Analysis of neutron-rich nuclei and their magic numbers based on blocking effects of tensor correlations.
  • Examination of configuration spaces available for nucleons during excitations to 2p-2h states.
  • Identified new magic numbers (N=6, 14, 16, 32, and 34) related to tensor blocking effects.
  • Showed that binding energy increases with high-momentum nucleon pairs due to tensor interactions.
  • Demonstrated the sudden loss of binding energy when new neutrons occupy previously available orbitals.

Cite This Study

I. Tanihata (2019) studied this question.

synapsesocial.com/papers/69dc6b7424e766dc313592aahttps://doi.org/10.48550/arxiv.1907.07902
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