4.5 Article

Universal damping mechanism of quantum vibrations in deep sub-barrier fusion reactions

期刊

PHYSICAL REVIEW C
卷 92, 期 2, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevC.92.021602

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资金

  1. MEXT HPCI Strategic Program
  2. JPSJ KAKENHI [15K05078]
  3. Grants-in-Aid for Scientific Research [25287065, 15K05078] Funding Source: KAKEN

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We demonstrate the damping of quantum octupole vibrations near the touching point when two colliding nuclei approach each other in the mass-asymmetric O-16+Pb-208 system, for which the strong fusion hindrance was clearly observed. We, for the first time, apply the random-phase approximation method to the heavy-mass asymmetric dinuclear system to calculate the transition strength B(E3) as a function of the center-of-mass distance. The obtained B(E3) strengths are substantially damped near the touching point, because the single-particle wave functions of the two nuclei strongly mix with each other and a neck is formed. The energy-weighted sums of B(E3) are also strongly correlated with the damping factor, which is phenomenologically introduced in the standard coupled-channel calculations to reproduce the fusion hindrance. This strongly indicates that the damping of the quantum vibrations universally occurs in the deep sub-barrier fusion reactions.

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