English

A Unified Approach for Coupled Beam Optics in Accelerators

Accelerator Physics 2026-03-05 v1

Abstract

Coupled beam optics can be geometrically described in terms of invariant eigenmode planes of a stable symplectic ``one-turn'' map MSp(4)\mathcal M\in Sp(4). We show that the non-uniqueness of symplectically normalized bases within each eigenmode plane constitutes an in-plane gauge freedom Sp(2)×Sp(2)Sp(2)\times Sp(2), and that many coupled-optics parametrizations differ primarily by gauge choice. Building on this fact, we identify basis-independent descriptors of lattice and beam optics and introduce bounded, gauge-invariant coupling parameters or fractions uk,invu_{k,\mathrm{inv}} computed from orthogonal projectors onto the eigenmode planes. To obtain smooth ss-dependent optics functions and consistent mode labeling, we present a unifying and practical approach based on an SO(2)SO(2) continuity gauge (Procrustes alignment), together with diagnostics for stability and invariance. We further relate Edwards--Teng, Mais--Ripken, Lebedev--Bogacz, Wolski, and Sagan--Rubin parametrizations as gauge-equivalent representations within the respective Sp(2)×Sp(2)Sp(2)\times Sp(2) gauge freedom. Numerical examples of coupled lattices and beam optics illustrate the proposed invariants and show how representation-dependent scalar coupling parameters (e.g.\ in the Lebedev--Bogacz gauge) can leave their nominal bounds while uk,invu_{k,\mathrm{inv}}, defined here, remain bounded and physically interpretable.

Keywords

Cite

@article{arxiv.2603.04195,
  title  = {A Unified Approach for Coupled Beam Optics in Accelerators},
  author = {Onur Gilanliogullari and Brahim Mustapha and Pavel Snopok},
  journal= {arXiv preprint arXiv:2603.04195},
  year   = {2026}
}
R2 v1 2026-07-01T11:03:17.009Z