首页> 外文期刊>Nuclear Physics, A: Journal Devoted to the Experimental Study of the Fundamental Constituents of Matter and Their Actions >REACTION MECHANISM OF B-11(P, ALPHA)BE-8 REACTION AT ASTROPHYSICALLY RELEVANT ENERGIES
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REACTION MECHANISM OF B-11(P, ALPHA)BE-8 REACTION AT ASTROPHYSICALLY RELEVANT ENERGIES

机译:B-11(P,ALPHA)BE-8在天体相关能量上的反应机理

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摘要

The experimental angular distributions for the reaction B-11(p, Lu)Be-8 at incident energies of 398, 498 and 780 keV below the Coulomb barrier are analyzed with the finite-range distorted-wave Born-approximation (FRDWBA) formalism including both the direct and the exchange processes. In addition to the direct-reaction mechanism, the compound process was included. The spectroscopic amplitudes used in the present analysis are obtained so as to fit the experimental angular distributions for the same reaction at the proton bombarding energy of 45.0 MeV. Using the folding procedures with the alpha alpha and the p alpha effective interactions, the optical-model potential in the exit channel and the real interaction between the incident proton and the cluster Be-8 in the target nucleus are deduced, respectively. Good agreements of theoretical calculations with experiments are obtained in regard to both the shape and the absolute magnitude of the differential cross section in the B-11(p, a)8Be reaction. Numerical calculations show that the direct-reaction mechanism is dominant for this reaction; in particular, the exchange process plays an important role in reproducing the experimental angular distributions in the energy ranges studied here. [References: 35]
机译:用有限范围的畸变波博恩近似(FRDWBA)形式来分析反应B-11(p,Lu)Be-8在库仑势垒以下398、498和780keV入射能量下的实验角度分布直接和交换过程。除了直接反应机理外,还包括复合工艺。获得了本分析中使用的光谱振幅,以适合在质子轰击能量为45.0 MeV时相同反应的实验角度分布。使用具有alpha alpha和p alpha有效相互作用的折叠过程,分别推导了出口通道中的光学模型电势以及入射质子与目标核中Be-8团簇之间的实际相互作用。关于B-11(p,a)8Be反应中微分截面的形状和绝对大小,理论上与实验的计算结果吻合良好。数值计算表明,直接反应机理是该反应的主导。特别地,交换过程在再现此处研究的能量范围内的实验角度分布中起着重要作用。 [参考:35]

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