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Paper · arXiv 2601.11888

Agentic-R: Learning to Retrieve for Agentic Search

Wenhan Liu, Xinyu Ma, Yutao Zhu, Yuchen Li, Daiting Shi, Dawei Yin, Zhicheng Dou

19 upvotesJanuary 17, 2026arXiv 预印本
AI 摘要

A novel retriever training framework for agentic search that uses both local relevance and global answer correctness metrics with iterative optimization between the search agent and retriever.

agentic searchmulti-step reasoningon-demand retrievalsimilarity-based retrieversretrieval-augmented generationmulti-turn agentic searchiterative training strategybidirectional optimizationevolving queriesanswer correctnesspassage utility

Abstract

Agentic search has recently emerged as a powerful paradigm, where an agent interleaves multi-step reasoning with on-demand retrieval to solve complex questions. Despite its success, how to design a retriever for agentic search remains largely underexplored. Existing search agents typically rely on similarity-based retrievers, while similar passages are not always useful for final answer generation. In this paper, we propose a novel retriever training framework tailored for agentic search. Unlike retrievers designed for single-turn retrieval-augmented generation (RAG) that only rely on local passage utility, we propose to use both local query-passage relevance and global answer correctness to measure passage utility in a multi-turn agentic search. We further introduce an iterative training strategy, where the search agent and the retriever are optimized bidirectionally and iteratively. Different from RAG retrievers that are only trained once with fixed questions, our retriever is continuously improved using evolving and higher-quality queries from the agent. Extensive experiments on seven single-hop and multi-hop QA benchmarks demonstrate that our retriever, termed , consistently outperforms strong baselines across different search agents. Our codes are available at: https://github.com/8421BCD/Agentic-R.

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