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When Reranking Hurts: Uncertainty-Based Gating for Few-Shot Reranking

Orian Dabod, Amir DN Cohen, Gabriel Stanovsky

arXiv:2606.31087Published June 30, 2026Updated July 1, 20260 citations
  • cs.CL
  • cs.AI

Abstract

Few-shot selection typically assumes that reranking retrieved examples always improves performance. We challenge this view by identifying that the expensive reranking step can in fact degrade performance. Instead, we propose \emph{Training-Free Gated Reranking}, which decides whether to rerank the few-shot examples based on the model's uncertainty. Extensive experiments across 8 LLMs, covering 7 NLU datasets and 9 MT domain-language combinations, demonstrate that our approach reduces computational costs by 15\%-80\% while improving average performance by up to 2\%. These findings indicate that higher computational cost does not guarantee better performance, and that reranking is most beneficial when targeted at high-uncertainty instances.

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