A Decision-Theoretic Formalisation of Steganography With Applications to LLM Monitoring

Fuente: arXiv
Salvato in:
Dettagli Bibliografici
Autori principali: Anwar, Usman, Piskorz, Julianna, Baek, David D., Africa, David, Weatherall, Jim, Tegmark, Max, de Witt, Christian Schroeder, van der Schaar, Mihaela, Krueger, David
Natura: Preprint
Pubblicazione: 2026
Soggetti:
Accesso online:
Tags: Aggiungi Tag
Nessun Tag, puoi essere il primo ad aggiungerne!!
_version_ 1866911631864233984
author Anwar, Usman
Piskorz, Julianna
Baek, David D.
Africa, David
Weatherall, Jim
Tegmark, Max
de Witt, Christian Schroeder
van der Schaar, Mihaela
Krueger, David
author_facet Anwar, Usman
Piskorz, Julianna
Baek, David D.
Africa, David
Weatherall, Jim
Tegmark, Max
de Witt, Christian Schroeder
van der Schaar, Mihaela
Krueger, David
contents Large language models are beginning to show steganographic capabilities. Such capabilities could allow misaligned models to evade oversight mechanisms. Yet principled methods to detect and quantify such behaviours are lacking. Classical definitions of steganography, and detection methods based on them, require a known reference distribution of non-steganographic signals. For the case of steganographic reasoning in LLMs, knowing such a reference distribution is not feasible; this renders these approaches inapplicable. We propose an alternative, \textbf{decision-theoretic view of steganography}. Our central insight is that steganography creates an asymmetry in usable information between agents who can and cannot decode the hidden content (present within a steganographic signal), and this otherwise latent asymmetry can be inferred from the agents' observable actions. To formalise this perspective, we introduce generalised $\mathcal{V}$-information: a utilitarian framework for measuring the amount of usable information within some input. We use this to define the \textbf{steganographic gap} -- a measure that quantifies steganography by comparing the downstream utility of the steganographic signal to agents that can and cannot decode the hidden content. We empirically validate our formalism, and show that it can be used to detect, quantify, and mitigate steganographic reasoning in LLMs.
format Preprint
id arxiv_https___arxiv_org_abs_2602_23163
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle A Decision-Theoretic Formalisation of Steganography With Applications to LLM Monitoring
Anwar, Usman
Piskorz, Julianna
Baek, David D.
Africa, David
Weatherall, Jim
Tegmark, Max
de Witt, Christian Schroeder
van der Schaar, Mihaela
Krueger, David
Artificial Intelligence
Computation and Language
Cryptography and Security
Information Theory
Multiagent Systems
Large language models are beginning to show steganographic capabilities. Such capabilities could allow misaligned models to evade oversight mechanisms. Yet principled methods to detect and quantify such behaviours are lacking. Classical definitions of steganography, and detection methods based on them, require a known reference distribution of non-steganographic signals. For the case of steganographic reasoning in LLMs, knowing such a reference distribution is not feasible; this renders these approaches inapplicable. We propose an alternative, \textbf{decision-theoretic view of steganography}. Our central insight is that steganography creates an asymmetry in usable information between agents who can and cannot decode the hidden content (present within a steganographic signal), and this otherwise latent asymmetry can be inferred from the agents' observable actions. To formalise this perspective, we introduce generalised $\mathcal{V}$-information: a utilitarian framework for measuring the amount of usable information within some input. We use this to define the \textbf{steganographic gap} -- a measure that quantifies steganography by comparing the downstream utility of the steganographic signal to agents that can and cannot decode the hidden content. We empirically validate our formalism, and show that it can be used to detect, quantify, and mitigate steganographic reasoning in LLMs.
title A Decision-Theoretic Formalisation of Steganography With Applications to LLM Monitoring
topic Artificial Intelligence
Computation and Language
Cryptography and Security
Information Theory
Multiagent Systems
url https://arxiv.org/abs/2602.23163