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Leveraging LLMs for Synthesizing Training Data Across Many Languages in Multilingual Dense Retrieval

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arxiv 2311.05800 v2 pith:V3YPK677 submitted 2023-11-10 cs.IR cs.AIcs.CL

classification cs.IRcs.AIcs.CL
keywords retrievalswim-irdensemodelstrainingdatamultilingualacross
verification ladder T0 review T1 audit T2 compute T3 formal
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There has been limited success for dense retrieval models in multilingual retrieval, due to uneven and scarce training data available across multiple languages. Synthetic training data generation is promising (e.g., InPars or Promptagator), but has been investigated only for English. Therefore, to study model capabilities across both cross-lingual and monolingual retrieval tasks, we develop SWIM-IR, a synthetic retrieval training dataset containing 33 (high to very-low resource) languages for fine-tuning multilingual dense retrievers without requiring any human supervision. To construct SWIM-IR, we propose SAP (summarize-then-ask prompting), where the large language model (LLM) generates a textual summary prior to the query generation step. SAP assists the LLM in generating informative queries in the target language. Using SWIM-IR, we explore synthetic fine-tuning of multilingual dense retrieval models and evaluate them robustly on three retrieval benchmarks: XOR-Retrieve (cross-lingual), MIRACL (monolingual) and XTREME-UP (cross-lingual). Our models, called SWIM-X, are competitive with human-supervised dense retrieval models, e.g., mContriever-X, finding that SWIM-IR can cheaply substitute for expensive human-labeled retrieval training data. SWIM-IR dataset and SWIM-X models are available at https://github.com/google-research-datasets/SWIM-IR.

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Cited by 2 Pith papers

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  1. Bekko Embedding: Parameter-Efficient Multilingual Retrieval with Ultra-Compact Encoders

    cs.IR 2026-07 conditional novelty 7.0 of 10

    Bekko a8m, with 7.7M active parameters, scores 56.2 on MMTEB Multilingual v2 Retrieval, beating mE5 models and BGE-M3, while a25m reaches 57.5, on par with gte-multilingual-base.

  2. Boosting Data Utilization for Multilingual Dense Retrieval

    cs.IR 2025-09 conditional novelty 4.0 of 10

    A three-stage data-utilization pipeline for multilingual dense retrieval, combining ensemble hard-negative mining, LLM-based filtering/generation, and monolingual topic-diverse mini-batches, improves MIRACL nDCG@10 by...

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