SMCEvolve: Principled Scientific Discovery via Sequential Monte Carlo Evolution

May 14, 2026 Β· Grace Period Β· + Add venue

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Authors Jiachen Jiang, Huminhao Zhu, Zhihui Zhu arXiv ID 2605.15308 Category cs.AI: Artificial Intelligence Cross-listed cs.LG, cs.MA Citations 0
Abstract
LLM-driven program evolution has emerged as a powerful tool for automated scientific discovery, yet existing frameworks offer no principled guide for designing their individual components and provide no guarantee that the search converges. We introduce SMCEvolve, which recasts program search as sampling from a reward-tilted target distribution and approximates it with a Sequential Monte Carlo (SMC) sampler. From this view, three core mechanisms emerge as principled components: adaptive parent resampling, mixture of mutation with acceptance, and automatic convergence control. We further provide a finite-sample complexity analysis that bounds the LLM-call budget required to reach a target approximation error. Across math, algorithm efficiency, symbolic regression, and end-to-end ML research benchmarks, SMCEvolve surpasses state-of-the-art evolving systems while using fewer LLM calls under self-determined termination. The code is available at https://github.com/kongwanbianjinyu/SMCEvolve.
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