Contribution to a conference proceedings/Contribution to a book GSI-2023-00441

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Improvements of the LORASR Code and their Impact on Current Beam Dynamics Designs

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2014

LINAC14: Proceedings of the 27th International Linear Accelerator Conference. 978-3-95450-142-7
27th International Linear Accelerator Conference, LINAC14, GenevaGeneva, Switzerland, 31 Aug 2014 - 5 Sep 20142014-08-312014-09-05
3 pp. () [10.15120/GSI-2023-00441]

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Abstract: LORASR is a multi-particle tracking code optimized for the beam dynamics design of ‘Combined Zero Degree Structure (KONUS)’ lattices, which can benefit from an adapted input file structure and code architecture. Recent code developments focused on the implementation of tools for machine error studies and loss profile investigations, including also steering correction strategies. These tools are a stringent necessity for the design of high intensity linacs. Thus, the abilities of the present LORASR release allow performing a manifold of checks and optimizations before finalizing the layouts of KONUS-based or conventional linacs. Two representative examples are the MAX-MYRRHA Injector and the GSI FAIR Facility Proton Linac, both under development with strong participation of IAP, Frankfurt University. This paper presents the status of the LORASR code development with focus on the new features and illustrates the impact on current designs by examples taken from the above-mentioned projects.

Keyword(s): linac ; proton ; DTL ; focusing ; quadrupole


Note: CC-BY-3.0 and by the respective authors

Contributing Institute(s):
  1. Strahlkühlung (BCO)
Research Program(s):
  1. 899 - ohne Topic (POF4-899) (POF4-899)
Experiment(s):
  1. (Facility Altdaten therefore no facility)

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Creative Commons Attribution CC BY 3.0 ; OpenAccess
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 Datensatz erzeugt am 2023-03-03, letzte Änderung am 2023-03-17