Repulsive Four-Body Interactions of Particles and Quasi-Stable Nuclear -Particle Condensates in Heavy Self-Conjugate Nuclei
arXiv:1804.05992 · doi:10.1103/PhysRevC.97.054301
Abstract
We study the effects of repulsive four-body interactions of particles on nuclear -particle condensates in heavy self-conjugate nuclei using a semi-analytic approach, and find that the repulsive four-body interactions could decrease the critical number of particles, beyond which quasi-stable -particle condensate states can no longer exist, even if these four-body interactions make only tiny contributions to the total energy of the Hoyle-like state of O. Explicitly, we study eight benchmark parameter sets, and find that the critical number decreases by from with vanishing four-body interactions. We also discuss the effects of four-body interactions on energies and radii of -particle condensates. Our study can be useful for future experiments to study -particle condensates in heavy self-conjugate nuclei. Also, the experimental determination of will eventually help establish a better understanding on the -particle interactions, especially the four-body interactions.
16 pages, 7 figures, accepted version
References in corpus (4)
- Alpha-particle condensation in 16O via a full four-body OCM calculation
- Status of Alpha-Particle Condensate Structure of the Hoyle State
- Density-induced suppression of the alpha-particle condensate in nuclear matter and the structure of alpha cluster states in nuclei
- Criterion for Bose-Einstein condensation in traps and self-bound systems
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