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Test time training enhances in-context learning of nonlinear functions

arxiv.org/abs/2509.25741

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Updated 5 h ago · first seen 11 Sept 2026

paper_01M294FSVD4ZYWS2WQ9P7E2Q38

Published
11 Sept 2026
T1 · 5 h ago
arXiv
2509.25741
T1 · 5 h ago
Category
stat.ML
T1 · 5 h ago

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https://arxiv.org/abs/2509.25741currentcurrentarXiv (Atom API + RSS)T1highdeterministic

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-cross Abstract: Test-time training (TTT) enhances model performance by explicitly updating designated parameters prior to each prediction to adapt to the test data. While TTT has demonstrated considerable empirical success, its theoretical underpinnings remain limited, particularly for nonlinear models. In this paper, we investigate the combination of TTT with in-context learning (ICL), where the model is given a few examples from the target distribution at inference time. We analyze this framework in the setting of single-index models, where the feature vector is drawn from a hidden low-dimensional subspace. For single-layer transformers trained with gradient-based algorithms and adopting TTT, we establish an upper bound on the prediction risk. Our theory reveals that TTT enables the single-layer transformers to adapt to both the feature vector and the link function, which vary across tasks. This creates a sharp contrast with ICL alone, which is theoretically difficult to adapt to shifts in the link function. Moreover, we provide the convergence rate with respect to the data length, showing the predictive error can be driven arbitrarily close to the noise level as the context size and the network width grow.currentcurrentarXiv (Atom API + RSS)T1highdeterministic

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replacecurrentcurrentarXiv (Atom API + RSS)T1highdeterministic

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2509.25741currentcurrentarXiv (Atom API + RSS)T1highdeterministic

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Kento Kuwataka, Taiji SuzukicurrentcurrentarXiv (Atom API + RSS)T1highdeterministic

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stat.ML, cs.LGcurrentcurrentarXiv (Atom API + RSS)T1highdeterministic

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https://arxiv.org/pdf/2509.25741currentcurrentarXiv (Atom API + RSS)T1highdeterministic

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stat.MLcurrentcurrentarXiv (Atom API + RSS)T1highdeterministic

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11 Sept 2026currentcurrentarXiv (Atom API + RSS)T1highdeterministic

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