Skip to main content
LLM Security Database
Skip to research search
Last analyzed 9/9/2026

Language Model Security Database

985 research findings · 1123 evaluated models

Filtered research findings

406 entries

Matches every word across titles, descriptions, sources, affected systems, and models.

Published 8/1/2024
Analyzed 12/29/2024

The Ensemble Jailbreak (EnJa) attack exploits vulnerabilities in the safety mechanisms of large language models (LLMs) by combining prompt-level and token-level attacks. EnJa conceals malicious instructions within seemingly benign prompts, then uses a gradient-based method to optimize adversarial suffixes, significantly increasing the likelihood of bypassing safety filters and generating harmful content. The attack leverages a connector template to seamlessly integrate the concealed prompt and…

EnJa: Ensemble Jailbreak on Large Language Models
Evaluated models: GPT-3.5 Turbo, GPT-4, Llama 2 13B +3 more

Source: arXiv

Published 8/1/2024
Analyzed 3/24/2025

A Cross-Prompt Injection Attack (XPIA) can be amplified by appending a Greedy Coordinate Gradient (GCG) suffix to the malicious injection. This increases the likelihood that a Large Language Model (LLM) will execute the injected instruction, even in the presence of a user's primary instruction, leading to data exfiltration. The success rate of the attack depends on the LLM's complexity; medium-complexity models show increased vulnerability.

WHITE PAPER: A Brief Exploration of Data Exfiltration using GCG Suffixes
Evaluated models: GPT-3.5 Turbo, GPT-4o, Phi 3 Mini

Source: arXiv

Published 8/1/2024
Analyzed 12/29/2024

Large Language Models (LLMs) are vulnerable to naturalistic adversarial attacks crafted using Markov Decision Processes (MDPs) and Monte Carlo Tree Search (MCTS). These attacks generate natural-language prompts that elicit harmful, violent, or discriminatory responses from the LLMs, even those with built-in safety mechanisms. The attacks are transferable across different LLMs, demonstrating a generalized vulnerability.

Kov: Transferable and Naturalistic Black-Box LLM Attacks using Markov Decision Processes and Tree Search
Evaluated models: FastChat-T5 3B, GPT-3.5 Turbo, GPT-4 +1 more

Source: arXiv

Published 8/1/2024
Analyzed 12/28/2024

Large Language Models (LLMs) are vulnerable to a novel black-box jailbreaking attack, ECLIPSE, which leverages the LLM's own capabilities as an optimizer to generate adversarial suffixes. ECLIPSE iteratively refines these suffixes based on a harmfulness score, bypassing the need for pre-defined affirmative phrases used in previous optimization-based attacks. This allows for effective jailbreaking even with limited interaction and without white-box access to the LLM's internal parameters.

Unlocking Adversarial Suffix Optimization Without Affirmative Phrases: Efficient Black-box Jailbreaking via LLM as Optimizer
Evaluated models: Falcon 7B Instruct, GPT-3.5 Turbo, Llama 2 7B Chat +1 more

Source: arXiv

Published 8/1/2024
Analyzed 12/29/2024

The ALERT-Motion framework demonstrates a vulnerability in text-to-motion (T2M) models where an attacker can craft subtly modified text prompts (adversarial prompts) that cause the model to generate motions significantly different from those intended by the benign prompt, yet semantically similar to a target motion specified by the attacker. The attack leverages a large language model (LLM) to autonomously generate these adversarial prompts, bypassing simple keyword-based detection mechanisms…

Autonomous LLM-Enhanced Adversarial Attack for Text-to-Motion
Evaluated models: Mdm, Mld

Source: arXiv

Published 8/1/2024
Analyzed 12/29/2024

A heuristic token search attack, termed HTS-Attack, can bypass safety mechanisms in text-to-image (T2I) models, allowing generation of NSFW content. The attack iteratively replaces tokens in a malicious prompt with semantically similar tokens from the model's vocabulary, avoiding detection by prompt and image checkers. The method leverages a surrogate CLIP model to maintain semantic similarity to the target NSFW prompt.

Rt-attack: Jailbreaking text-to-image models via random token
Evaluated models: Clip-vit-base-patch32, DALL-E 3, GPT 3.5-turbo-instruct +4 more

Source: arXiv

Published 8/1/2024
Analyzed 7/14/2025

Large Language Models (LLMs) are vulnerable to jailbreaking attacks leveraging synthetically generated prompts. A novel pipeline, SAGE-RT, generates a diverse dataset of 51,000 prompt-response pairs designed to exploit LLMs' vulnerabilities across various categories of harmfulness. These prompts successfully jailbreak state-of-the-art LLMs in a significant percentage of tested sub-categories, including 100% of macro-categories for certain models like GPT-4 and GPT-3.5-turbo. The vulnerability…

Sage-rt: Synthetic alignment data generation for safety evaluation and red teaming
Evaluated models: Claude 3.5 Sonnet, Gemma 7B IT, GPT-3.5 Turbo +8 more

Source: arXiv

Published 7/1/2024
Analyzed 12/28/2024

Large Language Models (LLMs) are vulnerable to an "Analyzing-based Jailbreak" (ABJ) attack that exploits their analytical and reasoning capabilities. ABJ crafts prompts that instruct the LLM to analyze seemingly innocuous data (e.g., character traits, features, job descriptions) related to a malicious intent, leading the LLM to generate harmful content despite its safety training. This bypasses standard safety mechanisms designed to prevent direct requests for harmful information.

Figure it Out: Analyzing-based Jailbreak Attack on Large Language Models
Evaluated models: Claude-3-haiku-0307, GLM 4 9B Chat, GPT-3.5 Turbo +3 more

Source: arXiv

Published 7/1/2024
Analyzed 12/29/2024

Embodied Large Language Models (LLMs) are vulnerable to manipulation via voice-based interactions, leading to the execution of harmful physical actions. Attacks exploit three vulnerabilities: (1) cascading LLM jailbreaks resulting in malicious robotic commands; (2) misalignment between linguistic outputs (verbal refusal) and physical actions (command execution); and (3) conceptual deception, where seemingly benign instructions lead to harmful outcomes due to incomplete world knowledge within…

BadRobot: Manipulating Embodied LLMs in the Physical World
Evaluated models: BERT, GPT-3.5 Turbo, GPT-4 Turbo +2 more

Source: arXiv

Published 7/1/2024
Analyzed 12/29/2024

Large Language Models (LLMs) struggle to generate genuinely fallacious reasoning. When prompted to create a false procedure for a harmful task, the LLMs instead leak the correct, harmful procedure while incorrectly claiming it's false. This vulnerability allows bypassing safety mechanisms and eliciting harmful outputs.

Large Language Models Are Involuntary Truth-Tellers: Exploiting Fallacy Failure for Jailbreak Attacks
Evaluated models: Gemini Pro, GPT-3.5 Turbo, GPT-4

Source: arXiv

Research methodology

Entries summarize publicly available primary-source security research. Model names reflect only systems explicitly evaluated by the cited paper, and measurements are research-reported unless independent verification is stated.