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Breaking the Capability Ceiling of LLM Post-Training by Reintroducing Markov States

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Reinforcement learning (RL) has become a standard paradigm for post-training and aligning Large Language Models (LLMs), yet recent evidence suggests it faces a persistent "capability ceiling": unlike classical RL systems that discover novel strategies, RL for LLMs often acts as a mere refiner of patterns already latent in pre-trained weights. In this work, we identify a fundamental structural bottleneck: while classical RL relies on compact, informative Markov states, current LLM post-training formulations are tethered to an ever-expanding history of actions. We revisit a classical principle long central to RL yet absent from LLM post-training: explicit Markov states. Theoretically, we provide rigorous guarantees demonstrating that leveraging estimated Markov states can significantly reduce sample complexity. Empirically, we show that introducing Markov states consistently breaks the performance boundaries of standard RL post-training across a suite of complex logic puzzles. Our findings suggest that moving beyond "history-as-state" modeling in favor of structured Markovian representations is essential for unlocking open-ended discovery and genuinely new reasoning capabilities in Generative AI.

Yurun Yuan, Tengyang Xie• 2026

Related benchmarks

TaskDatasetResultRank
Puzzle SolvingSudoku In Distribution
Average Score @12897.1
12
Puzzle SolvingSokoban (In Distribution)
Average Score @12889.7
12
Puzzle SolvingFutoshiki (In Distribution)
Avg@12879.8
12
Puzzle SolvingSudoku Out Of Distribution
Average @12877.8
12
Puzzle SolvingSokoban (Out Of Distribution)
Avg@12866.9
12
Puzzle SolvingFutoshiki (Out Of Distribution)
Avg@12842.6
12
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