论文标题

恒星中的电子捕获

Electron capture in stars

论文作者

Langanke, Karlheinz, Martínez-Pinedo, Gabriel, Zegers, Remco

论文摘要

电子捕获的核对几个天体物理对象的动力学起着至关重要的作用。捕获率可以在扰动理论中得出,其中允许核转变(Gamow-Teller Transitions)占主导地位,除了在核心偏转超新星中达到的较高温度下,禁止过渡也对速率产生了显着贡献。近年来,使用基于电荷交换反应的新型实验技术测量Gamow-Teller(GT)强度分布,近年来取得了决定性的进展。这些测量值不仅为许多相关核提供了基态的GT分布的数据,而且还可以作为核模型的有价值的约束,这些核模型需要得出许多核的捕获率,而这些核尚无数据。需要特定模型来评估有限温度下的恒星捕获率,在这种温度下也可以在激发核状态下发生捕获。 近年来,在恒星捕获率的建模方面也取得了重大进展。核多体模型以及计算机软件和硬件中的进步已经使这成为可能。特别是为了得出可靠的捕获率,用于核心偏离超新星的可靠捕获率,它是基于核模型的层次结构而开发的,该核模型的层次结构专门适用于在各种倒塌条件下存在的丰富的核和天体物理条件。 该手稿回顾了最近在得出出色的电子捕获率时取得的实验和理论进步。它还讨论了这些改善的速率对各种天体物理对象的影响。 (简略)

Electron captures on nuclei play an essential role for the dynamics of several astrophysical objects. The capture rate can be derived in perturbation theory where allowed nuclear transitions (Gamow-Teller transitions) dominate, except at the higher temperatures achieved in core-collapse supernovae where also forbidden transitions contribute significantly to the rates. There has been decisive progress in recent years in measuring Gamow-Teller (GT) strength distributions using novel experimental techniques based on charge-exchange reactions. These measurements provide not only data for the GT distributions of ground states for many relevant nuclei, but also serve as valuable constraints for nuclear models which are needed to derive the capture rates for the many nuclei, for which no data exist yet. In particular models are needed to evaluate the stellar capture rates at finite temperatures, where the capture can also occur on excited nuclear states. There has also been significant progress in recent years in the modelling of stellar capture rates. This has been made possible by advances in nuclear many-body models as well as in computer soft- and hardware. Specifically to derive reliable capture rates for core-collapse supernovae a dedicated strategy has been developed based on a hierarchy of nuclear models specifically adapted to the abundant nuclei and astrophysically conditions present at the various collapse conditions. This manuscript reviews the experimental and theoretical progress achieved recently in deriving stellar electron capture rates. It also discusses the impact these improved rates have on the various astrophysical objects. (Abridged)

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