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The 19F(α, p)22Ne Reaction at Energies of Astrophysical Relevance by Means of the Trojan Horse Method and Its Implications in AGB Stars

机译:利用特洛伊木马方法研究天文学相关能量中的19F(α,p)22Ne反应及其对AGB星的影响

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The main source of 19F in the universe has not yet been clearly identified and this issue represents one of the unanswered questions of stellar modeling. This lack of knowledge can be due to the 19F(α, p)22Ne reaction cross-section that has proven to be difficult at low energies: direct measurements stop only at about ~660 keV, leaving roughly half of the astrophysical relevant energy region (from 200 keV to 1.1 MeV) explored only by R-matrix calculations. In this work, we applied the Trojan Horse Method to the quasi-free three-body 6Li(19F, p22Ne)d reaction performed at E beam?=?6 MeV in order to indirectly study the 19F(α, p)22Ne reaction in the sub-Coulomb energy region. In this way, we obtained the cross-section and the reaction rate in the temperature region of interest for astrophysics and free from electron screening effects. A brief analysis of the impact of the new measured reaction rate in AGB star nucleosynthesis is also presented.
机译:宇宙中19F的主要来源尚未明确,这个问题代表了恒星模型的未解决问题之一。缺乏知识可能是由于19F(α,p)22Ne反应截面在低能量下被证明是困难的:直接测量仅在约660 keV处停止,约占天体物理相关能量区域的一半(从200 keV到1.1 MeV)(仅通过R-矩阵计算)。在这项工作中,我们将Trojan Horse方法应用于在E束?=?6 MeV下进行的准三体6Li(19F,p22Ne)d反应,以便间接研究19F(α,p)22Ne亚库仑能量区域。这样,我们获得了天体物理学感兴趣的温度范围内的横截面和反应速率,并且没有电子屏蔽效应。还简要分析了新测得的反应速率对AGB星形核合成的影响。
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