State Space Models are Strong Text Rerankers
December 18, 2024 ยท Declared Dead ยท ๐ Workshop on Representation Learning for NLP
"No code URL or promise found in abstract"
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Authors
Zhichao Xu, Jinghua Yan, Ashim Gupta, Vivek Srikumar
arXiv ID
2412.14354
Category
cs.CL: Computation & Language
Cross-listed
cs.IR
Citations
8
Venue
Workshop on Representation Learning for NLP
Last Checked
5 months ago
Abstract
Transformers dominate NLP and IR; but their inference inefficiencies and challenges in extrapolating to longer contexts have sparked interest in alternative model architectures. Among these, state space models (SSMs) like Mamba offer promising advantages, particularly $O(1)$ time complexity in inference. Despite their potential, SSMs' effectiveness at text reranking -- a task requiring fine-grained query-document interaction and long-context understanding -- remains underexplored. This study benchmarks SSM-based architectures (specifically, Mamba-1 and Mamba-2) against transformer-based models across various scales, architectures, and pre-training objectives, focusing on performance and efficiency in text reranking tasks. We find that (1) Mamba architectures achieve competitive text ranking performance, comparable to transformer-based models of similar size; (2) they are less efficient in training and inference compared to transformers with flash attention; and (3) Mamba-2 outperforms Mamba-1 in both performance and efficiency. These results underscore the potential of state space models as a transformer alternative and highlight areas for improvement in future IR applications.
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