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Diffusive approach for non-linear beam dynamics in a circular accelerator
In the design phase and simulation of a circular accelerator, it is fundamental to have a proper understanding of the single-particle non-linear betatronic motion, and of how such dynamics interfere with beam quality. In this work we study stochastically-perturbed Hamiltonian systems us...
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Lenguaje: | eng |
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2020
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Acceso en línea: | http://cds.cern.ch/record/2728138 |
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author | Montanari, Carlo Emilio |
author_facet | Montanari, Carlo Emilio |
author_sort | Montanari, Carlo Emilio |
collection | CERN |
description | In the design phase and simulation of a circular accelerator, it is fundamental to have a proper understanding of the single-particle non-linear betatronic motion, and of how such dynamics interfere with beam quality. In this work we study stochastically-perturbed Hamiltonian systems using a diffusive framework, based on the Fokker-Plank equation. This study is then applied to the analysis of the non-linear betatronic motion and to the Dynamic Aperture problem. In particular, we lay down the basis for formulating an interpolation procedure for Nekhoroshev-like diffusive processes and we pro-pose an experimental procedure for measuring the local diffusive behaviour inside an accelerator. Dynamic Aperture is a key quantity for the long-term behaviour of an accelerator. However, the measure of this quantity via simulation presents serious computational difficulties. Because of that it is in our interest to develop a functional law which models the DA time-dependence. |
id | cern-2728138 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2020 |
record_format | invenio |
spelling | cern-27281382020-09-28T12:40:41Zhttp://cds.cern.ch/record/2728138engMontanari, Carlo EmilioDiffusive approach for non-linear beam dynamics in a circular acceleratorAccelerators and Storage RingsMathematical Physics and MathematicsIn the design phase and simulation of a circular accelerator, it is fundamental to have a proper understanding of the single-particle non-linear betatronic motion, and of how such dynamics interfere with beam quality. In this work we study stochastically-perturbed Hamiltonian systems using a diffusive framework, based on the Fokker-Plank equation. This study is then applied to the analysis of the non-linear betatronic motion and to the Dynamic Aperture problem. In particular, we lay down the basis for formulating an interpolation procedure for Nekhoroshev-like diffusive processes and we pro-pose an experimental procedure for measuring the local diffusive behaviour inside an accelerator. Dynamic Aperture is a key quantity for the long-term behaviour of an accelerator. However, the measure of this quantity via simulation presents serious computational difficulties. Because of that it is in our interest to develop a functional law which models the DA time-dependence.CERN-THESIS-2019-383oai:cds.cern.ch:27281382020-08-17T07:42:16Z |
spellingShingle | Accelerators and Storage Rings Mathematical Physics and Mathematics Montanari, Carlo Emilio Diffusive approach for non-linear beam dynamics in a circular accelerator |
title | Diffusive approach for non-linear beam dynamics in a circular accelerator |
title_full | Diffusive approach for non-linear beam dynamics in a circular accelerator |
title_fullStr | Diffusive approach for non-linear beam dynamics in a circular accelerator |
title_full_unstemmed | Diffusive approach for non-linear beam dynamics in a circular accelerator |
title_short | Diffusive approach for non-linear beam dynamics in a circular accelerator |
title_sort | diffusive approach for non-linear beam dynamics in a circular accelerator |
topic | Accelerators and Storage Rings Mathematical Physics and Mathematics |
url | http://cds.cern.ch/record/2728138 |
work_keys_str_mv | AT montanaricarloemilio diffusiveapproachfornonlinearbeamdynamicsinacircularaccelerator |