27Al(p,α)24Mg和27Al(p,γ)28Si截面的间接测量及其天体物理意义

IF 1.7 4区 物理与天体物理 Q2 PHYSICS, NUCLEAR
Marco La Cognata
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引用次数: 0

摘要

在天体物理学中,26Al的存在对于研究银河系内的核合成和银河系核心坍缩超新星的速率至关重要。探测技术利用γ射线线和比较26Mg过量与流行的Mg同位素在陨石。因此,稳定的同位素27Al和24Mg至关重要,并且必须彻底检查影响铝和镁合成的MgAl循环。最近的观测揭示了恒星群的复杂性,对MgAl周期闭合的更严格限制也可能提高对恒星群的理解。27Al(p,α)24Mg和27Al(p,γ)28Si反应是27Al破坏的主要途径。考虑到不确定性,采用特洛伊木马方法,实现了化合物核28Si的精确光谱。这提供了相关天体物理能量范围内的基本截面数据。通过2H(27Al, α24Mg)n反应的间接测量,可以评估84.3 keV共振的贡献,并设定相邻共振的上限。本研究考察了THM推荐率对中质量渐近巨星分支星的影响,结果表明,由于聚变截面的变化,低质量的表面铝丰度显著增加,而24Mg基本保持不变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Indirect measurement of the 27Al(p,α)24Mg and 27Al(p,γ)28Si cross sections and astrophysical implications
In astrophysics, the presence of 26Al is vital for investigating nucleosynthesis within the Milky Way and the rate of Galactic core-collapse supernovae. Detection techniques utilize γ-ray lines and compare 26Mg excess with the prevalent Mg isotope in meteorites. Hence, stable isotopes 27Al and 24Mg are crucial, and the MgAl cycle impacting aluminum and magnesium synthesis must be thoroughly examined. Recent observations uncover complexities in stellar groups, whose comprehension may also improve with tighter constraints on the MgAl cycle's closure. The 27Al(p,α)24Mg and 27Al(p,γ)28Si reactions, primary 27Al destruction pathways, are pivotal to these models. Given uncertainties, the Trojan Horse Method is used, enabling precise spectroscopy of the compound nucleus 28Si. This provides essential cross section data within the relevant astrophysical energy range. The indirect measurement via the 2H(27Al, α24Mg)n reaction allowed for evaluating the 84.3 keV resonance's contribution and setting upper limits on adjacent resonances. This research examines the THM recommended rate's influence on intermediate-mass asymptotic giant branch stars, demonstrating a significant rise in surface aluminum abundance in lower masses due to changes in fusion cross sections, while 24Mg remains mostly unchanged.
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来源期刊
Nuclear Physics A
Nuclear Physics A 物理-物理:核物理
CiteScore
3.60
自引率
7.10%
发文量
113
审稿时长
61 days
期刊介绍: Nuclear Physics A focuses on the domain of nuclear and hadronic physics and includes the following subsections: Nuclear Structure and Dynamics; Intermediate and High Energy Heavy Ion Physics; Hadronic Physics; Electromagnetic and Weak Interactions; Nuclear Astrophysics. The emphasis is on original research papers. A number of carefully selected and reviewed conference proceedings are published as an integral part of the journal.
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