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arXiv:2411.10989·v4·Nuclear Theory

Fragmentation of Nuclear Remnants in Electron-Nucleus Collisions at High Energy as a Nonextensive Process

Ting-Ting Duan🇨🇳 · Sahanaa Büriechin🇨🇳 · Hai-Ling Lao🇨🇳 · Fu-Hu Liu🇨🇳 · Khusniddin K. Olimov🇺🇿

Abstract

Utilizing a partitioning method based on equal (or unequal) probabilities -- without incorporating the alpha-cluster (-cluster) model -- allows for the derivation of diverse topological configurations of nuclear fragments resulting from fragmentation. Subsequently, we predict the multiplicity distribution of nuclear fragments for specific excited nuclei, such as Be, C, and O, which can be formed as nuclear remnants in electron-nucleus () collisions at high energy. Based on the -cluster model, an -cluster structure may result in deviations in the multiplicity distributions of nuclear fragments with charge , compared to those predicted by the partitioning methods. Furthermore, in the framework of Tsallis statistics, the nonextensive generalized temperature, entropy index, and -entropy are obtained from the multiplicity distribution of nuclear fragments with given charge number. Our work shows that fragmentation of nuclear remnants in electron-nucleus collisions at high energy is a nonextensive process.

Comments: 22 pages, 7 figures. Please note that the title has been changed