States of the $^{12}$C Nucleus in the Toroidal Configuration
Cheuk-Yin Wong, Andrzej Staszczak

TL;DR
This paper explores the possibility that certain states of the $^{12}$C nucleus, including the Hoyle state, can be described as toroidal configurations, combining phenomenological and microscopic approaches to reveal new structural insights.
Contribution
It introduces a novel toroidal model for $^{12}$C states, linking toroidal particle-hole excitations with experimental data and microscopic mean-field calculations.
Findings
The Hoyle state may have a toroidal configuration component.
Microscopic density surfaces show toroidal features at the Hoyle energy.
Toroidal coexistence with 3-alpha cluster states is suggested.
Abstract
The C nucleus with =6 and =6 is a doubly closed-shell nucleus in a toroidal potential. In the description of the ground state and the Hoyle state of C in the resonating group method or the generator coordinate method, a superposition of the orientations of Wheeler's triangular cluster on the cluster plane would naturally generate an intrinsic toroidal density. A toroidal state also has a probability amplitude to overlap with a 3-alpha cluster, which is the dominant decay mode for the Hoyle state. For these reasons, we study a toroidal description of the states of C in the toroidal configuration both phenomenologically and microscopically. A toroidal C nucleus distinguishes itself by toroidal particle-hole multiplet excitations between one toroidal single-particle shell to another. From such a signature and experimental data, we find phenomenologically…
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Taxonomy
TopicsNuclear physics research studies · Quantum Chromodynamics and Particle Interactions · Particle physics theoretical and experimental studies
