Beam Optics Ramping in Under-Constrained Lattice Design: Application to Electron-Ion Collider Hadron Storage Ring Cooling Section

Fuente: arXiv
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Main Author: Xu, Derong
Format: Preprint
Published: 2025
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_version_ 1866908344079351808
author Xu, Derong
author_facet Xu, Derong
contents This paper presents the lattice design and optics ramping strategy for the cooling section of the Hadron Storage Ring (HSR) at the Electron-Ion Collider (EIC). The main challenge is that available tuning knobs exceed beam-optics constraints. Independently optimized injection and top-energy optics often yield disconnected solutions, making interpolation impossible. To address this, we propose two new methods. The first is a midpoint-penalty scheme that ensures ramping path continuity by penalizing constraint violations at intermediate state. The second is a top-down approach that adapts high-energy optics to low energy, guided by an adaptive weighting scheme to balance injection and ramping constraints. The solutions meet all beam dynamics and hardware limits. The two methods offer a general strategy for ramping in systems where the solution space is under-constrained and the starting and target configurations are far apart.
format Preprint
id arxiv_https___arxiv_org_abs_2504_21827
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Beam Optics Ramping in Under-Constrained Lattice Design: Application to Electron-Ion Collider Hadron Storage Ring Cooling Section
Xu, Derong
Accelerator Physics
This paper presents the lattice design and optics ramping strategy for the cooling section of the Hadron Storage Ring (HSR) at the Electron-Ion Collider (EIC). The main challenge is that available tuning knobs exceed beam-optics constraints. Independently optimized injection and top-energy optics often yield disconnected solutions, making interpolation impossible. To address this, we propose two new methods. The first is a midpoint-penalty scheme that ensures ramping path continuity by penalizing constraint violations at intermediate state. The second is a top-down approach that adapts high-energy optics to low energy, guided by an adaptive weighting scheme to balance injection and ramping constraints. The solutions meet all beam dynamics and hardware limits. The two methods offer a general strategy for ramping in systems where the solution space is under-constrained and the starting and target configurations are far apart.
title Beam Optics Ramping in Under-Constrained Lattice Design: Application to Electron-Ion Collider Hadron Storage Ring Cooling Section
topic Accelerator Physics
url https://arxiv.org/abs/2504.21827