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arXiv:1812.05769·v2·Nuclear Theory

Bose-Einstein condensation of dilute alpha clusters above four threshold in O in field theoretical superfluid cluster model

Junichi Takahashi · Yoshiya Yamanaka · Shigeru Ohkubo

Abstract

Observed well-developed cluster states in O, located above the four threshold, are investigated from the viewpoint of Bose-Einstein condensation of clusters by using a field-theoretical superfluid cluster model in which the order parameter is defined. The experimental energy levels are reproduced well for the first time by calculation. In particular, the observed 16.7 MeV and 18.8 MeV states with low-excitation energies from the threshold are found to be understood as a manifestation of the states of the Nambu-Goldstone zero-mode operators, associated with the spontaneous symmetry breaking of the global phase, which is caused by the Bose-Einstein condensation of the vacuum 15.1 MeV state with a dilute well-developed cluster structure just above the threshold. This gives evidence of the existence of the Bose-Einstein condensate of clusters in O. It is found that the emergence of the energy level structure with a well-developed cluster structure above the threshold is robust, almost independently of the condensation rate of clusters under significant condensation rate. The finding of the mechanism why the level structure that is similar to C emerges above the four threshold in O reinforces the concept of Bose-Einstein condensation of clusters in addition to C.

Comments: 7 pages, 6 figures

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