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Auto-RT: Automatic Jailbreak Strategy Exploration for Red-Teaming Large Language Models
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Automated red-teaming has become a crucial approach for uncovering vulnerabilities in large language models (LLMs). However, most existing methods focus on isolated safety flaws, limiting their ability to adapt to dynamic defenses and uncover complex vulnerabilities efficiently. To address this challenge, we propose Auto-RT, a reinforcement learning framework that automatically explores and optimizes complex attack strategies to effectively uncover security vulnerabilities through malicious queries. Specifically, we introduce two key mechanisms to reduce exploration complexity and improve strategy optimization: 1) Early-terminated Exploration, which accelerate exploration by focusing on high-potential attack strategies; and 2) Progressive Reward Tracking algorithm with intermediate downgrade models, which dynamically refine the search trajectory toward successful vulnerability exploitation. Extensive experiments across diverse LLMs demonstrate that, by significantly improving exploration efficiency and automatically optimizing attack strategies, Auto-RT detects a boarder range of vulnerabilities, achieving a faster detection speed and 16.63\% higher success rates compared to existing methods.
Forward citations
Cited by 4 Pith papers
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A Systematic Investigation of RL-Jailbreaking in LLMs
Systematic investigation reveals that dense rewards and extended episode lengths primarily drive the success of RL jailbreaking in LLMs.
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Quality-Diversity Red-Teaming: Automated Generation of High-Quality and Diverse Attackers for Large Language Models
QDRT combines behavior-conditioned RL, multiple specialized attackers, and a MAP-Elites replay buffer to generate LLM attacks that are more toxic and cover more risk-category/style combinations.
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Jailbreak-R1: Exploring the Jailbreak Capabilities of LLMs via Reinforcement Learning
A three-stage RL framework (cold start, diversity warm-up, curriculum jailbreak) trains a 7B red-team model that reports SOTA jailbreak ASR and diversity on HarmBench, though the evaluation is compromised by training-...
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Lifelong Safety Alignment for Language Models
A co-evolutionary attacker-defender loop, warmed up by strategies extracted from jailbreak papers, reduces jailbreak success rate on a robust model from 73% to 7% in two iterations.
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