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Establishing the Properties of the First Stars and Supernovae and the Origins of the Heaviest Elements with Stellar Archaeology

Establishing the Properties of the First Stars and Supernovae and the Origins of the Heaviest Elements with Stellar Archaeology
用恒星考古学确定第一颗恒星和超新星的性质以及最重元素的起源
批准号:
1716251
负责人:
Anna Frebel
金额:
$65.07万
依托单位国家:
美国
项目类别:
Continuing Grant
财政年份:
2017
资助国家:
美国
项目状态:
已结题
起止时间:
2017-09-01 至 2023-08-31

项目摘要

项目成果

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中文摘要
翻译
大爆炸留下了仅由氢、氦和微量锂组成的宇宙。随着时间的推移,元素周期表中越来越多的重化学元素产生于恒星、超新星爆炸和中子星的合并中。天文学家研究古老的恒星,以了解元素的宇宙历史,以及它们的存在如何在整个宇宙时间内影响恒星和星系的形成。这些恒星有超过130亿年的历史,因此在宇宙大爆炸后不久就形成了。这些低质量恒星随时间变化非常缓慢,因此保留了它们形成时宇宙的“化学指纹”。这位研究人员打算将对恒星的观测组织成一个化学序列,从而更好地了解我们在地球上发现的元素。这位调查员将通过与本科生合作制作视频来扩展她的公共教育努力,描述与常见消费品的天文数字联系。这些视频将通过该机构的外展计划分发,学生们将获得媒体工作和科学交流方面的技能。调查人员将使用智利的大型麦哲伦望远镜观察银河系和小卫星矮星系中的这些古老恒星。这将使她能够解锁关于最早照亮宇宙的最早恒星以及相关的第一元素产生事件的关键信息,这些事件是任何其他方法无法获得的。它还将提供长期以来缺失的关于最重元素(如银和金)的生产地点的细节。她还将使用恒星化学成分作为关键指标来搜索幸存的第一批星系。总之,这使她能够重建宇宙是如何从几颗恒星演变成今天丰富而复杂的宇宙的。她的研究成果将指导许多研究领域,如早期恒星和星系的形成、核物理、恒星核合成、矮小星系、银河系的形成,并补充现有和下一代望远镜将获得的远场观测。
英文摘要
The Big Bang left behind the Universe made from just hydrogen, helium, and tiny amounts of lithium. With time more and more of all heavier chemical elements from the Periodic Table were produced in stars, supernova explosions, and mergers of neutron stars. Astronomers study old stars to understand the cosmic history of the elements and how their presence has influenced star and galaxy formation throughout cosmic time. These stars are over 13 billion years old and thus formed very early in the Universe soon after the Big Bang. These low mass stars change very slowly with time and so preserve a "chemical fingerprint" of the Universe at the time they formed. The investigator intends to organize observations of stars into a chemical sequence leading to a better understanding of the elements that we find on Earth. The investigator will expand upon her public education efforts by working with undergraduate students to produce videos describing the astronomical connection to common consumer products. The videos will be distributed through the institution's outreach program and the students will gain skill in media work and science communications.The investigator will use the large Magellan telescope in Chile to observe these old stars in the Milky Way galaxy and small satellite dwarf galaxies. This will enable her to unlock critical information about the very first stars that first lit up the Universe and the associated first element production events that cannot be obtained with any other method. It will also provide long-missing details about the production sites of the very heaviest elements, e.g., silver and gold. She will also search for surviving first galaxies using stellar chemical composition as a key indicator. Altogether, this enables her to reconstruct how the Universe evolved from just a few stars into today's rich and complex Universe. Her results will guide many research areas such as early star and galaxy formation, nuclear physics, stellar nucleosynthesis, dwarf galaxies, formation of the Milky Way, and complement far-field observations to be obtained with current and next generations of telescopes.
期刊论文(55)
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会议论文
DOI: 10.3847/1538-4357/aaf3b9
发表时间: 2019
期刊: The Astrophysical Journal
影响因子: --
作者: [Placco, Vinicius M., Santucci, Rafael M., Beers, Timothy C., Chanamé, Julio, Sepúlveda, María Paz, Coronado, Johanna, Rossi, Silvia, Lee, Young Sun, Starkenburg, Else, Youakim, Kris]
通讯作者: Youakim, Kris
Actinide-rich and Actinide-poor r -process-enhanced Metal-poor Stars Do Not Require Separate r -process Progenitors
富含锕系元素和贫锕系元素的r过程增强型贫金属恒星不需要单独的r过程祖细胞
DOI: 10.3847/1538-4357/ab2a01
发表时间: 2019
期刊: The Astrophysical Journal
影响因子: --
作者: [Holmbeck, Erika M., Frebel, Anna, McLaughlin, G. C., Mumpower, Matthew R., Sprouse, Trevor M., Surman, Rebecca]
通讯作者: Surman, Rebecca
Characterizing r -Process Sites through Actinide Production
通过锕系元素生产表征 r 过程位点
DOI: 10.1088/1742-6596/1668/1/012020
发表时间: 2020
期刊: Journal of Physics: Conference Series
影响因子: --
作者: [Holmbeck, Erika M., Surman, Rebecca, Frebel, Anna, McLaughlin, G. C., Mumpower, Matthew R., Sprouse, Trevor M., Kawano, Toshihiko, Vassh, Nicole, Beers, Timothy C.]
通讯作者: Beers, Timothy C.
DOI: --
发表时间: 2020
期刊: The astrophysical journal
影响因子: --
作者: [Mardini, Mohammad K., Placco, Vinicius M., Meiron, Yohai, Ishchenko, Marina, Avramov, Branislav, Mazzarini, Matteo, Berczik, Peter, Arca Sedda, Manuel, Beers, Timothy C., Frebel, Anna]
通讯作者: Frebel, Anna
共 40 条
    Reconstructing the Formation of the Milky Way with Metal-Poor Stars
    CAREER: The origin of the metal-poor halo of the Milky Way
    海外基金