MLIP Detective: Active Failure Mode Discovery Beyond Benchmark Scores for Machine-Learning Interatomic Potentials

arXiv:2609.08399 · cs.LG, cond-mat.mtrl-sci, physics.chem-ph · Submitted 2026-09-08 · Read on arXiv

cs.LG, cond-mat.mtrl-sci, physics.chem-ph

Submitted: 2026-09-08

Updated: 2026-09-08

License: http://creativecommons.org/licenses/by/4.0/

The gist: Universal machine-learning interatomic potentials (u-MLIPs) aim to generalize across diverse configurations.

Terminology

Abstract

Universal machine-learning interatomic potentials (u-MLIPs) aim to generalize across diverse configurations. Benchmarks enable reproducible evaluation but may not expose failures outside their predefined scope. Here, we show that physics-informed search can complement benchmark-based evaluation by uncovering hidden failure modes. We introduce MLIP Detective, an agentic framework for active failure mode discovery. Starting from benchmark evidence, MLIP Detective generates falsifiable, physics-informed failure hypotheses, screens them with inexpensive simulations, and escalates only the most suspicious cases to human experts together with proposed verification protocols. Without issue-specific prompting, MLIP Detective identified and characterized a systematic anomaly in MACE-MPA-0: the model predicted some relaxed adsorbate-surface systems involving O- or F-containing adsorbates to be higher in energy than their corresponding separated fragments. Using cross-model comparisons, MLIP Detective further inferred a likely training-data origin for the anomaly, consistent with recent reports.

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