Negative components in the representation $\frac{𝑑^{2}(𝜎𝐸)}{𝑑𝐸^2}$ of heavy-ion fusion cross sections
Negative components are observed in the representation $\frac{𝑑^{2}(𝜎𝐸)}{𝑑𝐸^2}$ in heavy-ion fusions related to recent studies of noticeable oscillations in the high-energy region of the fusion excitation functions. A modified multiGaussian model has been developed, which includes contributions for both positive and negative components in the $\frac{𝑑^{2}(𝜎𝐸)}{𝑑𝐸^2}$ representation. The model reproduces the heavy-ion fusion excitation functions very well, including oscillations. The property of these negative components in the $\frac{𝑑^{2}(𝜎𝐸)}{𝑑𝐸^2}$ spectrum and the reaction mechanism of fusion at energies above the Coulomb barrier are investigated. Finally, the model also reproduces well light heavy-ion fusion reactions between 12 C and 16 O at high energy; results imply that the compound nucleus channel effect may have an important contribution at the high energy region for all fusion systems.