Closed orbit correction at synchrotrons for symmetric and near-symmetric lattices
Accelerator Physics
2019-07-31 v1
Abstract
This contribution compiles the benefits of lattice symmetry in the context of closed orbit correction. A symmetric arrangement of BPMs and correctors results in structured orbit response matrices of Circulant or block Circulant type. These forms of matrices provide favorable properties in terms of computational complexity, information compression and interpretation of mathematical vector spaces of BPMs and correctors. For broken symmetries, a nearest-Circulant approximation is introduced and the practical advantages of symmetry exploitation are demonstrated with the help of simulations and experiments in the context of FAIR synchrotrons.
Keywords
Cite
@article{arxiv.1902.08683,
title = {Closed orbit correction at synchrotrons for symmetric and near-symmetric lattices},
author = {Sajjad Hussain Mirza and Rahul Singh and Peter Forck and Harald Klingbeil},
journal= {arXiv preprint arXiv:1902.08683},
year = {2019}
}