Presolar Grains as Probes of Supernova Nucleosynthesis.

IF 9.1 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
Space Science Reviews Pub Date : 2024-01-01 Epub Date: 2024-11-12 DOI:10.1007/s11214-024-01122-w
Nan Liu, Maria Lugaro, Jan Leitner, Bradley S Meyer, Maria Schönbächler
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引用次数: 0

Abstract

We provide an overview of the isotopic signatures of presolar supernova grains, specifically focusing on 44Ti-containing grains with robustly inferred supernova origins and their implications for nucleosynthesis and mixing mechanisms in supernovae. Recent technique advancements have enabled the differentiation between radiogenic (from 44Ti decay) and nonradiogenic 44Ca excesses in presolar grains, made possible by enhanced spatial resolution of Ca-Ti isotope analyses with the Cameca NanoSIMS (Nano-scale Secondary Ion Mass Spectrometer) instrument. Within the context of presolar supernova grain data, we discuss (i) the production of 44Ti in supernovae and the impact of interstellar medium heterogeneities on the galactic chemical evolution of 44Ca/40Ca, (ii) the nucleosynthesis processes of neutron bursts and explosive H-burning in Type II supernovae, and (iii) challenges in identifying the progenitor supernovae for 54Cr-rich presolar nanospinel grains. Drawing on constraints and insights derived from presolar supernova grain data, we also provide an overview of our current understanding of the roles played by various supernova types - including Type II, Type Ia, and electron capture supernovae - in accounting for the diverse array of nucleosynthetic isotopic variations identified in bulk meteorites and meteoritic components. We briefly overview the potential mechanisms that have been proposed to explain these nucleosynthetic variations by describing the transport and distribution of presolar dust carriers in the protoplanetary disk. We highlight existing controversies in the interpretation of presolar grain data and meteoritic nucleosynthetic isotopic variations, while also outlining potential directions for future research.

作为超新星核合成探针的前太阳晶粒。
我们概述了太阳系前超新星晶粒的同位素特征,特别是重点研究了含有 44Ti 的晶粒,这些晶粒被有力地推断为超新星起源,以及它们对超新星中核合成和混合机制的影响。最近的技术进步使得能够区分太阳系前晶粒中的放射源(来自 44Ti 衰变)和非放射源 44Ca 过量成为可能,这得益于利用 Cameca NanoSIMS(纳米级二次离子质谱仪)仪器提高了 Ca-Ti 同位素分析的空间分辨率。在前极超新星晶粒数据的背景下,我们讨论了(i)超新星中 44Ti 的产生以及星际介质异质性对银河系 44Ca/40Ca 化学演化的影响,(ii)II 型超新星中的中子爆发和爆炸性 H 燃烧的核合成过程,以及(iii)为富含 54Cr 的前极纳米超新星晶粒确定原生超新星所面临的挑战。借鉴从太阳系前超新星晶粒数据中获得的约束和见解,我们还概述了我们目前对各种超新星类型(包括 II 型、Ia 型和电子俘获超新星)在解释大块陨石和陨石成分中发现的各种核合成同位素变化方面所起作用的理解。我们简要概述了通过描述原行星盘中前极尘埃载体的迁移和分布来解释这些核合成变化的潜在机制。我们强调了在解释前极粒数据和陨石核合成同位素变化方面存在的争议,同时还概述了未来研究的潜在方向。
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来源期刊
Space Science Reviews
Space Science Reviews 地学天文-天文与天体物理
CiteScore
19.70
自引率
3.90%
发文量
60
审稿时长
4-8 weeks
期刊介绍: Space Science Reviews (SSRv) stands as an international journal dedicated to scientific space research, offering a contemporary synthesis across various branches of space exploration. Emphasizing scientific outcomes and instruments, SSRv spans astrophysics, physics of planetary systems, solar physics, and the physics of magnetospheres & interplanetary matter. Beyond Topical Collections and invited Review Articles, Space Science Reviews welcomes unsolicited Review Articles and Special Communications. The latter encompass papers related to a prior topical volume/collection, report-type papers, or timely contributions addressing a robust combination of space science and technology. These papers succinctly summarize both the science and technology aspects of instruments or missions in a single publication.
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