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Investigating Faithfulness in Large Audio Language Models

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arxiv 2509.22363 v4 pith:KOA2A6CI submitted 2025-09-26 cs.LG eess.AS

Investigating Faithfulness in Large Audio Language Models

classification cs.LG eess.AS
keywords audiofaithfulnessmodelslanguagelargereasoningfinallalms
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Large Audio Language Models (LALMs) integrate audio encoders with pretrained Large Language Models to perform complex multimodal reasoning tasks. While these models can generate Chain-of-Thought (CoT) explanations, the faithfulness of these reasoning chains remains unclear. In this work, we propose a systematic framework to evaluate CoT faithfulness in LALMs with respect to both the input audio and the final model prediction. We define three criteria for audio faithfulness: hallucination-free, holistic, and attentive listening. We also introduce a benchmark based on both audio and CoT interventions to assess faithfulness\footnote{The benchmarking interface and evaluation results are available at https://poonehmousavi.github.io/faithfulness/. Experiments on Audio Flamingo 3 and Qwen2.5-Omni suggest a potential multimodal disconnect: reasoning often aligns with the final prediction but is not always strongly grounded in the audio and can be vulnerable to hallucinations or adversarial perturbations.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. A Survey of Large Audio Language Models: Generalization, Trustworthiness, and Outlook

    cs.SD 2026-05 unverdicted novelty 5.0

    A survey of Large Audio Language Models that establishes a taxonomy of trustworthiness vulnerabilities and proposes a Defense-in-Depth roadmap for audio intelligence.

  2. Acoustic Cue Alignment in Audio Language Models for Speech Emotion Recognition

    cs.SD 2026-06 unverdicted novelty 4.0

    Aligned acoustic concept tokens from eGeMAPS improve UAR in ALM-based SER on FAU-Aibo and IEMOCAP while shuffled or corrupted tokens reduce performance without collapsing predictions, indicating partial anchoring to audio.