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arXiv:2508.14898·v2·High Energy Physics — Phenomenology

Lorentz-Equivariance without Limitations

Luigi Favaro🇧🇪 · Gerrit Gerhartz🇩🇪 · Fred A. Hamprecht🇩🇪 · Peter Lippmann🇩🇪 · Sebastian Pitz🇩🇪 · Tilman Plehn🇩🇪 · Huilin Qu🇨🇭 · Jonas Spinner🇩🇪

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Abstract

Lorentz Local Canonicalization (LLoCa) ensures exact Lorentz-equivariance for arbitrary neural networks with minimal computational overhead. For the LHC, it equivariantly predicts local reference frames for each particle and propagates any-order tensorial information between them. We apply it to graph networks and transformers. We showcase its cutting-edge performance on amplitude regression, end-to-end event generation, and jet tagging. For jet tagging, we introduce a large top tagging dataset to benchmark LLoCa versions of a range of established benchmark architectures and highlight the importance of symmetry breaking.

Comments: 33 pages, 9 figures, 8 tables. v2: refined and additional results, added appendix B and C, 38 pages, 9 figures, 10 tables

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