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Watermarking Makes Language Models Radioactive

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arxiv 2402.14904 v2 pith:Y4GZ43CW submitted 2024-02-22 cs.CR cs.AIcs.CLcs.LG

classification cs.CRcs.AIcs.CLcs.LG
keywords languageradioactivitytexttrainingwatermarkedconfidencedatamethods
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We investigate the radioactivity of text generated by large language models (LLM), i.e. whether it is possible to detect that such synthetic input was used to train a subsequent LLM. Current methods like membership inference or active IP protection either work only in settings where the suspected text is known or do not provide reliable statistical guarantees. We discover that, on the contrary, it is possible to reliably determine if a language model was trained on synthetic data if that data is output by a watermarked LLM. Our new methods, specialized for radioactivity, detects with a provable confidence weak residuals of the watermark signal in the fine-tuned LLM. We link the radioactivity contamination level to the following properties: the watermark robustness, its proportion in the training set, and the fine-tuning process. For instance, if the suspect model is open-weight, we demonstrate that training on watermarked instructions can be detected with high confidence ($p$-value $< 10^{-5}$) even when as little as $5\%$ of training text is watermarked.

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Cited by 1 Pith paper

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  1. Reference-Based Distillation Detection in LLMs

    cs.LG 2026-06 conditional novelty 7.5 of 10

    Reference-based membership inference recovers the true teacher of a distilled LLM with near-perfect accuracy when an earlier same-lineage checkpoint is available.

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