Nuclear astrophysics and resonant reactions: Exploring the threshold region with the Trojan Horse Method

M. Cognata, S. Cherubini, M. Gulino, L. Lamia, R. Pizzone, S. Romano, C. Spitaleri, A. Tumino
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Abstract

Resonant reactions play an important role in astrophysics as they might significantly enhance the cross section with respect to the direct reaction contribution and alter the nucleosynthetic flow. Moreover, resonances bear information about states in the intermediate compound nucleus formed in the reaction. However, nuclear reactions in stars take place at energies well below [Formula: see text] MeV and the Coulomb barrier, exponentially suppressing the cross section, and the electron screening effect, due to the shielding of nuclear charges by atomic electrons, make it very difficult to provide accurate input data for astrophysics. Therefore, indirect methods have been introduced; in particular, we will focus on the Trojan Horse Method. We will briefly discuss the theory behind the method, to make clear its domain of applicability, the advantages and the drawbacks, and two recent cases will be shortly reviewed: the [Formula: see text] reaction, which is an important fluorine destruction channel in the proton-rich outer layers of asymptotic giant branch (AGB) stars, and the [Formula: see text] reactions, which play a critical role in astrophysics to understand stellar burning scenarios in carbon-rich environments.
核天体物理与共振反应:用特洛伊木马方法探索阈值区域
共振反应在天体物理学中起着重要的作用,因为它们可以显著地提高直接反应贡献的截面并改变核合成流。此外,共振还包含了反应中形成的中间化合物核的状态信息。然而,恒星中的核反应发生在远低于MeV和库仑势垒的能量下,以指数方式抑制了横截面,并且由于原子电子屏蔽原子核电荷而产生的电子屏蔽效应,使得为天体物理学提供准确的输入数据变得非常困难。因此,引入了间接方法;我们将特别关注特洛伊木马方法。我们将简要讨论该方法背后的理论,明确其适用范围、优点和缺点,并简要回顾最近的两个案例:[公式:见文]反应,这是渐近巨支(AGB)恒星富质子外层的重要氟破坏通道,以及[公式:见文]反应,它们在天体物理学中对理解富碳环境下恒星燃烧情景起着关键作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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