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From "um" to "yeah": Producing, predicting, and regulating information flow in human conversation

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arxiv 2403.08890 v1 pith:FIQXW6YC submitted 2024-03-13 cs.CL cs.ITmath.ITq-bio.NC

classification cs.CLcs.ITmath.ITq-bio.NC
keywords informationconversationdemandsmustassociatedcognitiveflowlisteners
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Conversation demands attention. Speakers must call words to mind, listeners must make sense of them, and both together must negotiate this flow of information, all in fractions of a second. We used large language models to study how this works in a large-scale dataset of English-language conversation, the CANDOR corpus. We provide a new estimate of the information density of unstructured conversation, of approximately 13 bits/second, and find significant effects associated with the cognitive load of both retrieving, and presenting, that information. We also reveal a role for backchannels -- the brief yeahs, uh-huhs, and mhmms that listeners provide -- in regulating the production of novelty: the lead-up to a backchannel is associated with declining information rate, while speech downstream rebounds to previous rates. Our results provide new insights into long-standing theories of how we respond to fluctuating demands on cognitive resources, and how we negotiate those demands in partnership with others.

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  1. Mass-Scale Analysis of In-the-Wild Conversations Reveals Complexity Bounds on LLM Jailbreaking

    cs.CL 2025-07 conditional novelty 6.0 of 10

    Across 2M+ in-the-wild LLM conversations, jailbreak attempts show no higher complexity than normal chats, and assistant toxicity has declined over time, suggesting bounded attack sophistication.

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