Papers › Formal Mathematics Statement Curriculum Learning

Formal Mathematics Statement Curriculum Learning

3 Feb 2022arXiv:2202.01344archive 2025-07-28

Stanislas Polu, Jesse Michael Han, Kunhao Zheng, Mantas Baksys, Igor Babuschkin, Ilya Sutskever

We explore the use of expert iteration in the context of language modeling applied to formal mathematics. We show that at same compute budget, expert iteration, by which we mean proof search interleaved with learning, dramatically outperforms proof search only. We also observe that when applied to a collection of formal statements of sufficiently varied difficulty, expert iteration is capable of finding and solving a curriculum of increasingly difficult problems, without the need for associated ground-truth proofs. Finally, by applying this expert iteration to a manually curated set of problem statements, we achieve state-of-the-art on the miniF2F benchmark, automatically solving multiple challenging problems drawn from high school olympiads.

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Automated Theorem ProvingLanguage ModelingLanguage Modelling

Results from the paper archive 2025-07-28

TaskDatasetModelMetricValueRank at snapshotLeaderboardReport
Automated Theorem Proving miniF2F-test Lean Expert Iteration ITP Lean #13 of 29 Archive leaderboard report
Automated Theorem Proving miniF2F-test Lean Expert Iteration Pass@1 29.6 #13 of 29 Archive leaderboard report
Automated Theorem Proving miniF2F-test Lean Expert Iteration Pass@32 34.5 #13 of 29 Archive leaderboard report
Automated Theorem Proving miniF2F-test Lean Expert Iteration Pass@64 36.6 #13 of 29 Archive leaderboard report
Automated Theorem Proving miniF2F-test Lean Expert Iteration cumulative 36.6 #13 of 29 Archive leaderboard report

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