通过宇宙再电离,抑制矮星系的形成
J Stuart B Wyithe1, Abraham Loeb
1University of Melbourne, Parkville, Victoria 3010, Australia. swyithe@physics.unimelb.edu.au
Nature
|May 20, 2006
概括
早期宇宙的星系显示,在再电离后,矮星系的形成被抑制了. 再电离后的星系需要最小质量为10^10.9太阳质量,影响宇宙恒星形成率.
科学领域:
- 宇宙学的宇宙学是什么?
- 银河系的形成和进化
- 早期宇宙天体物理学 天体物理学
背景情况:
- 最近的发现揭示了许多微弱的星系在大爆炸后的十亿年内形成.
- 这些早期星系分布的波动影响了宇宙的电离分数.
- 理论模型预测压制的矮星系形成后宇宙再电离,导致恒星形成的下降.
研究的目的:
- 为宇宙再离子化后矮星系形成预测抑制提供观测证据.
- 为了确定负责电离辐射的星系的最小质量,红移z ≈ 5.5.5.
主要方法:
- 在宇宙的电离分数中观察到的散射的分析,沿着早期类星体的视线进行了分析.
- 观察到的散射与基于星系质量分布的理论预测的比较.
- 利用最近发现的微弱,早期星系的数据.
主要成果:
- 据报道,有证据表明,在宇宙再离子化之后,矮星系的形成被抑制了.
- 在红移z ≈ 5.5时贡献最多电离辐射的星系的质量必须超过大约10^10.9±0.5太阳质量.
- 这个最小质量比被认为主导了再电离的星系质量大得多 (大小有两个数量级).
结论:
- 这些发现支持了理论上关于在再电离后抑制矮星系形成的预测.
- 一个不同的群体更大质量的星系主导了再电离后的电离辐射.
- 未来的红外望远镜调查预计将在矮星系抑制之前识别早期,较小的星系,这些星系负责矮星系抑制之前的初始再电离.
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