Geometric Interpretation of Layer Normalization and a Comparative Analysis with RMSNorm

Akshat Gupta, Atahan Ozdemir, Caoqinwei Gong, Gopala Anumanchipalli


Abstract
This paper presents a novel geometric interpretation of LayerNorm and explores how LayerNorm influences the norm and orientation of hidden vectors in the representation space. We show that the definition of LayerNorm is innately linked to the uniform vector, defined as . We then show that the standardization step in LayerNorm can be understood in three simple steps: (i) remove the component of a vector along the uniform vector, (ii) normalize the remaining vector, and (iii) scale the resultant vector by, where is the dimensionality of the representation space. Finally, we compare the hidden representations of LayerNorm-based LLMs with models trained using RMSNorm and show that all LLMs naturally operate orthogonal to the uniform vector both during training and inference, that is, on average they do not have a component along the uniform vector during training or inference. This presents the first mechanistic evidence that removing the component along the uniform vector in LayerNorm is a redundant step. These results advocate for using RMSNorm over LayerNorm which is also more computationally efficient.
Anthology ID:
2026.findings-eacl.20
Volume:
Findings of the Association for Computational Linguistics: EACL 2026
Month:
March
Year:
2026
Address:
Rabat, Morocco
Editors:
Vera Demberg, Kentaro Inui, Lluís Marquez
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Findings
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Publisher:
Association for Computational Linguistics
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Pages:
375–407
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https://preview.aclanthology.org/ingest-eacl/2026.findings-eacl.20/
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Cite (ACL):
Akshat Gupta, Atahan Ozdemir, Caoqinwei Gong, and Gopala Anumanchipalli. 2026. Geometric Interpretation of Layer Normalization and a Comparative Analysis with RMSNorm. In Findings of the Association for Computational Linguistics: EACL 2026, pages 375–407, Rabat, Morocco. Association for Computational Linguistics.
Cite (Informal):
Geometric Interpretation of Layer Normalization and a Comparative Analysis with RMSNorm (Gupta et al., Findings 2026)
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