ICML2026

SciAgentGym: Benchmarking Multi-Step Scientific Tool-Use in LLM Agents

Yujiong Shen, Yajie Yang, Zhiheng Xi, Binze Hu, Huayu Sha, Qiyuan Peng, Jiazheng Zhang, Junlin Shang, Jixuan Huang, Yutao Fan, Jingqi Tong, Ming Zhang, Shihan Dou, Zhenfei Yin, Xingjun Ma, LEI BAI, Tao Gui, Qi Zhang, Xuanjing Huang, Yu-Gang Jiang

被引用 6 次

摘要

Fudan NLP Group Scientific reasoning inherently demands integrating sophisticated toolkits to navigate domainspecific knowledge. Yet, current benchmarks largely overlook agents' ability to orchestrate tools for such rigorous workflows. To bridge this gap, we introduce SciAgentGym, a scalable interactive environment featuring 1,780 domain-specific tools across four natural science disciplines, supported by a robust execution infrastructure. Complementing this, we present SciAgentBench, a tiered evaluation suite designed to stress-test agentic capabilities from elementary actions to long-horizon workflows. Our evaluation identifies a critical bottleneck: state-of-the-art models still struggle with complex scientific tool-use, and their performance degrades substantially as interaction horizons extend. To address this, we propose SciForge, a data synthesis method that models the tool action space as a dependency graph to generate logic-aware training trajectories. By fine-tuning on these trajectories, our SciAgent-8B outperforms the significantly larger Qwen3-VL-235B-Instruct while exhibiting positive cross-domain transfer of scientific tool-use capabilities. These results underscore the promising potential of next-generation autonomous scientific agents.