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Effect of compound nuclear reaction mechanism in 12C( Li 6 ,d) reaction at sub-Coulomb energy

机译:化合物核反应机制在 12 c( li 6 ,D)在子库仑能量的反应

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The angular distribution of the 12 C( Li 6 ,d) reaction populating the 6.92 and 7.12 MeV states of 16 O at sub-Coulomb energy (E = c m 3 MeV) are analysed in the framework of the Distorted Wave Born Approximation (DWBA). Recent results on excitation function measurements and backward angle angular distributions derive ANC for both the states on the basis of an alpha transfer mechanism. In the present work, we show that considering both forward and backward angle data in the analysis, the 7.12 MeV state at sub-Coulomb energy is populated from Compound nuclear process rather than transfer process. The 6.92 MeV state is however produced from direct reaction mechanism.
机译:在扭曲波出出生近似(DWBA)的框架内分析了填充6.92和7.12meV态的12c(Li 6,D)反应的5.92和7.12mev态的角度分布(E = cm 3mev) 。近期励磁函数测量结果和后角角分布在基于α传送机制的基础上为各种态产生了ANC。在本作工作中,我们表明,考虑到分析中的前向和后角数据,子库仑能量的7.12meV状态是从复合核过程中填充而不是转移过程。然而,6.92MeV状态由直接反应机制产生。

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