AI Agents 相关度: 8/10

AI-Assisted Scientific Assessment: A Case Study on Climate Change

Christian Buck, Levke Caesar, Michelle Chen Huebscher, Massimiliano Ciaramita, Erich M. Fischer, Zeke Hausfather, Özge Kart Tokmak, Reto Knutti, Markus Leippold, Joseph Ludescher, Katharine J. Mach, Sofia Palazzo Corner, Kasra Rafiezadeh Shahi, Johan Rockström, Joeri Rogelj, Boris Sakschewski
arXiv: 2602.09723v1 发布: 2026-02-10 更新: 2026-02-10

AI 摘要

评估AI在气候变化科学评估中的作用,发现AI能加速工作流程但需专家监督。

主要贡献

  • 评估AI在科学评估中的作用
  • 发现AI可以加速科学工作流程
  • 揭示专家监督对AI生成内容质量的重要性

方法论

与气候科学家合作,使用Gemini AI环境评估AMOC稳定性,分析AI在论文撰写中的作用。

原文摘要

The emerging paradigm of AI co-scientists focuses on tasks characterized by repeatable verification, where agents explore search spaces in 'guess and check' loops. This paradigm does not extend to problems where repeated evaluation is impossible and ground truth is established by the consensus synthesis of theory and existing evidence. We evaluate a Gemini-based AI environment designed to support collaborative scientific assessment, integrated into a standard scientific workflow. In collaboration with a diverse group of 13 scientists working in the field of climate science, we tested the system on a complex topic: the stability of the Atlantic Meridional Overturning Circulation (AMOC). Our results show that AI can accelerate the scientific workflow. The group produced a comprehensive synthesis of 79 papers through 104 revision cycles in just over 46 person-hours. AI contribution was significant: most AI-generated content was retained in the report. AI also helped maintain logical consistency and presentation quality. However, expert additions were crucial to ensure its acceptability: less than half of the report was produced by AI. Furthermore, substantial oversight was required to expand and elevate the content to rigorous scientific standards.

标签

AI 科学评估 气候变化 AMOC Gemini

arXiv 分类

cs.CL