arXiv:2412.02439astro-ph.GAcs.LG2024-12被引 2

用因果机器学习揭示环境对星系恒星形成的影响

Nature versus nurture in galaxy formation: the effect of environment on star formation with causal machine learning

  • 构建因果模型,分离星系内部与外部环境对恒星形成的影响
  • 发现环境抑制恒星形成率最高达100倍,早期宇宙则促进形成
  • 指出传统质量控制方法会误导结果,需谨慎使用

理解星系形成与演化是现代天文学的核心。尽管大规模巡天和模拟推动了显著进展,但现象背后的物理机制及其重要性仍不明晰,因多数研究仅建立相关性而非因果关系。本文采用因果推断框架,针对星系形成中‘先天’(内部过程)与‘后天’(外部环境)哪个更重要这一基本问题,在IllustrisTNG模拟中估计环境对恒星形成率(SFR)的因果效应。通过开发综合性因果模型并运用流行病学前沿技术,克服了长期存在的因果混淆难题。结果表明,环境对恒星形成具有负向且显著的因果效应,最大抑制因子达~100;然而在早期宇宙(z~1),环境反而正向促进恒星形成,提升因子约~10,高红移下更显著。此外,(i) 内部因素同样关键,忽略它会使中等密度环境中的因果效应低估约2倍;(ii) 在时间快照中控制星体质量虽常见,但不仅不足以解耦内外因素,反而产生偏差;(iii) 星体质量可作为内部影响的合理代理变量。该研究为处理存在闭环反馈的动态系统(如地球气候)提供可借鉴的方法蓝图。

原文摘要 · Abstract (English)

Understanding how galaxies form and evolve is at the heart of modern astronomy. With the advent of large-scale surveys and simulations, remarkable progress has been made in the last few decades. Despite this, the physical processes behind the phenomena, and particularly their importance, remain far from known, as correlations have primarily been established rather than the underlying causality. We address this challenge by applying the causal inference framework. Specifically, we tackle the fundamental open question of whether galaxy formation and evolution depends more on nature (i.e., internal processes) or nurture (i.e., external processes), by estimating the causal effect of environment on star-formation rate in the IllustrisTNG simulations. To do so, we develop a comprehensive causal model and employ cutting-edge techniques from epidemiology to overcome the long-standing problem of disentangling nature and nurture. We find that the causal effect is negative and substantial, with environment suppressing the SFR by a maximal factor of $\sim100$. While the overall effect at $z=0$ is negative, in the early universe, environment is discovered to have a positive impact, boosting star formation by a factor of $\sim10$ at $z\sim1$ and by even greater amounts at higher redshifts. Furthermore, we show that: (i) nature also plays an important role, as ignoring it underestimates the causal effect in intermediate-density environments by a factor of $\sim2$, (ii) controlling for the stellar mass at a snapshot in time, as is common in the literature, is not only insufficient to disentangle nature and nurture but actually has an adverse effect, though (iii) stellar mass is an adequate proxy of the effects of nature. Finally, this work may prove a useful blueprint for extracting causal insights in other fields that deal with dynamical systems with closed feedback loops, such as the Earth's climate.

星系形成因果推断机器学习宇宙学

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