English

Causal Front-Door Adjustment for Robust Jailbreak Attacks on LLMs

Computation and Language 2026-02-09 v2

Abstract

Safety alignment mechanisms in Large Language Models (LLMs) often operate as latent internal states, obscuring the model's inherent capabilities. Building on this observation, we model the safety mechanism as an unobserved confounder from a causal perspective. Then, we propose the Causal Front-Door Adjustment Attack (CFA{2^2}) to jailbreak LLM, which is a framework that leverages Pearl's Front-Door Criterion to sever the confounding associations for robust jailbreaking. Specifically, we employ Sparse Autoencoders (SAEs) to physically strip defense-related features, isolating the core task intent. We further reduce computationally expensive marginalization to a deterministic intervention with low inference complexity. Experiments demonstrate that CFA{2^2} achieves state-of-the-art attack success rates while offering a mechanistic interpretation of the jailbreaking process.

Keywords

Cite

@article{arxiv.2602.05444,
  title  = {Causal Front-Door Adjustment for Robust Jailbreak Attacks on LLMs},
  author = {Yao Zhou and Zeen Song and Wenwen Qiang and Fengge Wu and Shuyi Zhou and Changwen Zheng and Hui Xiong},
  journal= {arXiv preprint arXiv:2602.05444},
  year   = {2026}
}
R2 v1 2026-07-01T09:37:29.931Z