arXiv:2501.10664·v1·Nuclear Theory
The 3 correlations of ground and excited states of within the microscopic cluster model
De-Ye Tao · Bo Zhou · Yu-Gang Ma
Abstract
The cluster structures of the states in , including the ground state, the Hoyle state, and the recently identified and states, are analyzed to explore the cluster configurations and correlations without assuming the existence of . In particular, the key quantity -- two-cluster overlap amplitudes -- is calculated for the clustering channels to reveal the essential features of these states. The results clearly show the distinction between the compact structure of the ground state and the gas-like structures of the excited states. The Hoyle state exhibits the expected gas-like dominant () configuration, while the state shows a more extended clustering structure, which can be viewed as a breathing-like excitation of the Hoyle state, with an additional nodal structure. The state is found to have a mixed configuration, featuring a bent-arm-like structure in the channel and an enhanced correlation in the channel.
Comments: 6 pages, 3 figures