地球可能直接暴露在冷密的星际介质中2-3亿年前
Merav Opher1,2, Abraham Loeb3, J E G Peek4,5
1Radcliffe Institute for Advanced Study at Harvard University, Cambridge, MA USA.
概括
我们的太阳系大概在2-300万年前经过了密集的星际云. 这次碰撞显著缩小了日球,使地球暴露在恶劣的太空条件下,并可能影响其气候.
科学领域:
- 天文学和天体物理学
- 空间物理 空间物理
- 行星科学 行星科学
背景情况:
- 星际云比分散的星际介质密度要高得多.
- 太阳系在过去可能遇到了密集的星际云.
- 缺乏关于这种遭遇及其影响的详细证据.
研究的目的:
- 调查太阳系通过局部冷云带 (LRCC) 的可能性.
- 为了模拟日球对这种遭遇的反应.
- 评估对地球及其气候的潜在影响.
主要方法:
- 使用HI4PI调查数据建模局部冷云带 (LRCC) 的速度场.
- 使用最先进的日球模拟来模拟遭遇.
- 分析60Fe和244Pu同位素的地质证据.
主要成果:
- 太阳系可能在2-300万年前通过了狮子座的LRCC.
- 在穿越过程中,日球模拟显示显著收缩至0.22 AU.
- 地球将被暴露在极端的星际中性密度 (>3,000厘米-3).
结论:
- 通过LRCC的通道与地质同位素记录一致.
- 这样的遭遇可能导致银河系宇宙射线辐射增加.
- 这一事件可能对地球的气候和系统产生了重大影响.
关键词:
太阳物理 太阳物理更多相关视频
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