Matching Optimization for TRIUMF's Rare Isotope Linac

Fuente: arXiv
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Main Authors: Shelbaya, O., Hassan, O., Baartman, R., Kester, O., Pearce, C., Planche, T., Zhang, L.
Format: Preprint
Published: 2025
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author Shelbaya, O.
Hassan, O.
Baartman, R.
Kester, O.
Pearce, C.
Planche, T.
Zhang, L.
author_facet Shelbaya, O.
Hassan, O.
Baartman, R.
Kester, O.
Pearce, C.
Planche, T.
Zhang, L.
contents Fringe field effects are computed from simulated and measured quadrupole magnetic field gradients, enabling a more realistic modelling of the medium energy section optics in TRIUMF's RIB postaccelerator. Quantifying the fringe field optics using the method developed by Matsuda and Wollnik allows for the use of parallel modelling tune optimizations for machine operation, providing operators with an efficient means to re-tune the variable energy drift tube linac for RIB delivery.
format Preprint
id arxiv_https___arxiv_org_abs_2509_20292
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Matching Optimization for TRIUMF's Rare Isotope Linac
Shelbaya, O.
Hassan, O.
Baartman, R.
Kester, O.
Pearce, C.
Planche, T.
Zhang, L.
Accelerator Physics
Applied Physics
Fringe field effects are computed from simulated and measured quadrupole magnetic field gradients, enabling a more realistic modelling of the medium energy section optics in TRIUMF's RIB postaccelerator. Quantifying the fringe field optics using the method developed by Matsuda and Wollnik allows for the use of parallel modelling tune optimizations for machine operation, providing operators with an efficient means to re-tune the variable energy drift tube linac for RIB delivery.
title Matching Optimization for TRIUMF's Rare Isotope Linac
topic Accelerator Physics
Applied Physics
url https://arxiv.org/abs/2509.20292