24–28 Aug 2026
Kirchhoff Institute for Physics (KIP)
Europe/Berlin timezone

Lorentz Local Canonicalization: How to Make Any Network Lorentz-Equivariant

27 Aug 2026, 11:10
8m
3.404

3.404

Patterns & Anomalies 🔀 Patterns & Anomalies

Speaker

Sebastian Pitz (LPNHE Paris)

Description

Lorentz-equivariant neural networks are becoming the leading architectures for high-energy physics. Current implementations rely on specialized layers, limiting architectural choices. We introduce Lorentz Local Canonicalization (LLoCa), a general framework that renders any backbone network exactly Lorentz-equivariant. Using equivariantly predicted local reference frames, we construct LLoCa-transformers and graph networks. We adapt a recent approach for geometric message passing to the non-compact Lorentz group, allowing propagation of space-time tensorial features. Data augmentation emerges from LLoCa as a special choice of reference frame. Our models achieve competitive and state-of-the-art accuracy on relevant particle physics tasks, while being 4× faster and using 10× fewer FLOPs.

Authors

Prof. Fred Hamprecht (IWR, Heidelberg University) Mr Gerrit Gerhartz (IWR, Heidelberg University) Dr Jonas Spinner (IPPP, Durham University) Dr Luigi Favaro (Particle Physics and Phenomenology (CP3), Université catholique de Louvain) Dr Peter Lippmann (IWR, Heidelberg University) Sebastian Pitz (LPNHE Paris) Prof. Tilman Plehn (ITP, Heidelberg University)

Presentation materials