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Tailored metamaterial-based absorbers for high order mode damping

In modern particle accelerators, satisfying the desired beam properties (high currents, high luminosities, etc.) increasingly implies limiting the total beam coupling impedance, which depends on the machine and the parameters of the circulating beams. A number of different reduction techniques have...

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Detalles Bibliográficos
Autores principales: Masullo, M R, Vaccaro, V G, Chikhi, N, Passarelli, A, Andreone, A
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:https://dx.doi.org/10.23732/CYRCP-2020-009.373
http://cds.cern.ch/record/2752540
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author Masullo, M R
Vaccaro, V G
Chikhi, N
Passarelli, A
Andreone, A
author_facet Masullo, M R
Vaccaro, V G
Chikhi, N
Passarelli, A
Andreone, A
author_sort Masullo, M R
collection CERN
description In modern particle accelerators, satisfying the desired beam properties (high currents, high luminosities, etc.) increasingly implies limiting the total beam coupling impedance, which depends on the machine and the parameters of the circulating beams. A number of different reduction techniques have been proposed during the years depending on the specific applications, ranging from higher order modes (HOM) damping to solutions entailing high electrical-conductivity coatings of the pipe. This paper investigates the use of metamaterial-based absorbers for sensibly reducing or nearly cancelling the HOM contribution to the impedance. We design and fabricate sub-wavelength two-dimensional metallic resonant structures based on the split ring resonator (SRR) geometry that can be employed as mode dampers in accelerating structures. Experimental results inside a pillbox cavity well agree with full wave electromagnetic simulations. In this work we present the first results on a SRR geometry tailored for LHC collimators. We show how metamaterials can be a valid alternative for impedance mitigation in experimental devices commonly operating along a particle beam line.
id oai-inspirehep.net-1844089
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
record_format invenio
spelling oai-inspirehep.net-18440892021-02-25T20:01:59Zdoi:10.23732/CYRCP-2020-009.373http://cds.cern.ch/record/2752540engMasullo, M RVaccaro, V GChikhi, NPassarelli, AAndreone, ATailored metamaterial-based absorbers for high order mode dampingAccelerators and Storage RingsIn modern particle accelerators, satisfying the desired beam properties (high currents, high luminosities, etc.) increasingly implies limiting the total beam coupling impedance, which depends on the machine and the parameters of the circulating beams. A number of different reduction techniques have been proposed during the years depending on the specific applications, ranging from higher order modes (HOM) damping to solutions entailing high electrical-conductivity coatings of the pipe. This paper investigates the use of metamaterial-based absorbers for sensibly reducing or nearly cancelling the HOM contribution to the impedance. We design and fabricate sub-wavelength two-dimensional metallic resonant structures based on the split ring resonator (SRR) geometry that can be employed as mode dampers in accelerating structures. Experimental results inside a pillbox cavity well agree with full wave electromagnetic simulations. In this work we present the first results on a SRR geometry tailored for LHC collimators. We show how metamaterials can be a valid alternative for impedance mitigation in experimental devices commonly operating along a particle beam line.oai:inspirehep.net:18440892020
spellingShingle Accelerators and Storage Rings
Masullo, M R
Vaccaro, V G
Chikhi, N
Passarelli, A
Andreone, A
Tailored metamaterial-based absorbers for high order mode damping
title Tailored metamaterial-based absorbers for high order mode damping
title_full Tailored metamaterial-based absorbers for high order mode damping
title_fullStr Tailored metamaterial-based absorbers for high order mode damping
title_full_unstemmed Tailored metamaterial-based absorbers for high order mode damping
title_short Tailored metamaterial-based absorbers for high order mode damping
title_sort tailored metamaterial-based absorbers for high order mode damping
topic Accelerators and Storage Rings
url https://dx.doi.org/10.23732/CYRCP-2020-009.373
http://cds.cern.ch/record/2752540
work_keys_str_mv AT masullomr tailoredmetamaterialbasedabsorbersforhighordermodedamping
AT vaccarovg tailoredmetamaterialbasedabsorbersforhighordermodedamping
AT chikhin tailoredmetamaterialbasedabsorbersforhighordermodedamping
AT passarellia tailoredmetamaterialbasedabsorbersforhighordermodedamping
AT andreonea tailoredmetamaterialbasedabsorbersforhighordermodedamping