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Diffusive models and chaos indicators for non-linear betatron motion in circular hadron accelerators

Understanding the complex dynamics of beam-halo formation and evo- lution in circular particle accelerators is crucial for the design of current and future rings, particularly those utilizing superconducting magnets such as the CERN Large Hadron Collider (LHC), its luminosity upgrade HL-LHC, and the...

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Autor principal: Montanari, Carlo Emilio
Lenguaje:eng
Publicado: 2023
Materias:
Acceso en línea:https://dx.doi.org/10.48676/unibo/amsdottorato/10811
http://cds.cern.ch/record/2863942
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author Montanari, Carlo Emilio
author_facet Montanari, Carlo Emilio
author_sort Montanari, Carlo Emilio
collection CERN
description Understanding the complex dynamics of beam-halo formation and evo- lution in circular particle accelerators is crucial for the design of current and future rings, particularly those utilizing superconducting magnets such as the CERN Large Hadron Collider (LHC), its luminosity upgrade HL-LHC, and the proposed Future Circular Hadron Collider (FCC-hh). A recent diffu- sive framework, which describes the evolution of the beam distribution by means of a Fokker-Planck equation, with diffusion coefficient derived from the Nekhoroshev theorem, has been proposed to describe the long-term be- haviour of beam dynamics and particle losses. In this thesis, we discuss the theoretical foundations of this framework, and propose the implementation of an original measurement protocol based on collimator scans in view of measuring the Nekhoroshev-like diffusive coefficient by means of beam loss data. The available LHC collimator scan data, unfortunately collected without the proposed measurement protocol, have been successfully analysed using the proposed framework. This approach is also applied to datasets from de- tailed measurements of the impact on the beam losses of so-called long-range beam-beam compensators also at the LHC. Furthermore, dynamic indicators have been studied as a tool for exploring the phase-space properties of realistic accelerator lattices in single-particle tracking simulations. By first examining the classification performance of known and new indicators in detecting the chaotic character of initial conditions for a modulated Hénon map and then applying this knowledge to study the properties of realistic accelerator lattices, we tried to identify a connection between the presence of chaotic regions in the phase space and Nekhoroshev-like diffusive behaviour, providing new tools to the accelerator physics community.
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spelling cern-28639422023-07-28T14:10:46Zdoi:10.48676/unibo/amsdottorato/10811http://cds.cern.ch/record/2863942engMontanari, Carlo EmilioDiffusive models and chaos indicators for non-linear betatron motion in circular hadron acceleratorsAccelerators and Storage RingsUnderstanding the complex dynamics of beam-halo formation and evo- lution in circular particle accelerators is crucial for the design of current and future rings, particularly those utilizing superconducting magnets such as the CERN Large Hadron Collider (LHC), its luminosity upgrade HL-LHC, and the proposed Future Circular Hadron Collider (FCC-hh). A recent diffu- sive framework, which describes the evolution of the beam distribution by means of a Fokker-Planck equation, with diffusion coefficient derived from the Nekhoroshev theorem, has been proposed to describe the long-term be- haviour of beam dynamics and particle losses. In this thesis, we discuss the theoretical foundations of this framework, and propose the implementation of an original measurement protocol based on collimator scans in view of measuring the Nekhoroshev-like diffusive coefficient by means of beam loss data. The available LHC collimator scan data, unfortunately collected without the proposed measurement protocol, have been successfully analysed using the proposed framework. This approach is also applied to datasets from de- tailed measurements of the impact on the beam losses of so-called long-range beam-beam compensators also at the LHC. Furthermore, dynamic indicators have been studied as a tool for exploring the phase-space properties of realistic accelerator lattices in single-particle tracking simulations. By first examining the classification performance of known and new indicators in detecting the chaotic character of initial conditions for a modulated Hénon map and then applying this knowledge to study the properties of realistic accelerator lattices, we tried to identify a connection between the presence of chaotic regions in the phase space and Nekhoroshev-like diffusive behaviour, providing new tools to the accelerator physics community.CERN-THESIS-2023-091oai:cds.cern.ch:28639422023-07-04T13:03:16Z
spellingShingle Accelerators and Storage Rings
Montanari, Carlo Emilio
Diffusive models and chaos indicators for non-linear betatron motion in circular hadron accelerators
title Diffusive models and chaos indicators for non-linear betatron motion in circular hadron accelerators
title_full Diffusive models and chaos indicators for non-linear betatron motion in circular hadron accelerators
title_fullStr Diffusive models and chaos indicators for non-linear betatron motion in circular hadron accelerators
title_full_unstemmed Diffusive models and chaos indicators for non-linear betatron motion in circular hadron accelerators
title_short Diffusive models and chaos indicators for non-linear betatron motion in circular hadron accelerators
title_sort diffusive models and chaos indicators for non-linear betatron motion in circular hadron accelerators
topic Accelerators and Storage Rings
url https://dx.doi.org/10.48676/unibo/amsdottorato/10811
http://cds.cern.ch/record/2863942
work_keys_str_mv AT montanaricarloemilio diffusivemodelsandchaosindicatorsfornonlinearbetatronmotionincircularhadronaccelerators