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Visualizing differences in nuclear structure

Visualizing differences in nuclear structure
The horizontal axis represents the proton scattering angle and the vertical axis represents the ease with which protons are scattered. C-type and S-type are theoretical values assuming cluster and shell structure, respectively. Expt. is existing data. Credit: Wataru Horiuchi, OMU

Helium usually has two protons and two neutrons strongly bound to each other, often forming a substructure within the nucleus. A nucleus composed of several such substructures is called a cluster structure. In the standard picture, nuclei are difficult to understand in terms of so-called shell structure; because there was no way to clearly distinguish whether each nucleus had a cluster or a shell structure.

Associate Professor Wataru Horiuchi and Professor Naoyuki Itagaki from the Osaka Metropolitan University Graduate School of Science, have developed an "antisymmetrized quasicluster model" that can represent cluster and shell structure in a single framework, which they applied to carbon and oxygen. The density distributions they obtained were significantly different under the assumption of cluster and shell structure. Furthermore, these differences were visualized as data by performing scattering experiments with accelerated to high energies for each .

Theoretical calculations from this study and existing reveal that in carbon and oxygen nuclei, there are many components with a clustered structure. The new study is published in the journal Âé¶¹ÒùÔºical Review C.

"The method is simple and powerful, allowing visualization of nuclear structures without the need for extensive numerical calculations," said Professor Horiuchi. "In the future, we will consider applying this method to heavier nuclei such as neon, magnesium, and silicon isotopes, so that we can continue to answer that ultimate question: where did the elements we see around us come from?"

More information: W. Horiuchi et al, Imprints of α clustering in the density profiles of C12 and O16, Âé¶¹ÒùÔºical Review C (2023).

Citation: Visualizing differences in nuclear structure (2023, April 13) retrieved 19 May 2025 from /news/2023-04-visualizing-differences-nuclear.html
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