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HOM characterization for beam diagnostics at the european XFEL injector

Higher Order Modes (HOM) excited by bunched electron beams in accelerating cavities carry information about the beam position and phase. This principle is used at the FLASH facility, at DESY, for beam position monitoring in 1.3 and 3.9 GHz cavities. Dipole modes, which depend on the beam offset, are...

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Autores principales: Baboi, Nicoletta, Hellert, Thorsten, Shi, Liangliang, Wamsat, Thomas, DESY, Jones, Roger M, Joshi, Nirav
Formato: info:eu-repo/semantics/article
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:http://cds.cern.ch/record/2268767
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author Baboi, Nicoletta
Hellert, Thorsten
Shi, Liangliang
Wamsat, Thomas, DESY
Jones, Roger M
Joshi, Nirav
author_facet Baboi, Nicoletta
Hellert, Thorsten
Shi, Liangliang
Wamsat, Thomas, DESY
Jones, Roger M
Joshi, Nirav
author_sort Baboi, Nicoletta
collection CERN
description Higher Order Modes (HOM) excited by bunched electron beams in accelerating cavities carry information about the beam position and phase. This principle is used at the FLASH facility, at DESY, for beam position monitoring in 1.3 and 3.9 GHz cavities. Dipole modes, which depend on the beam offset, are used. Similar monitors are now under design for the European XFEL. In addition to beam position, the beam phase with respect to the accelerating RF will be monitored using monopole modes from the first higher order monopole band. The HOM signals are available from two couplers installed on each cavity. Their monitoring will allow the on-line tracking of the phase stability over time, and we anticipate that it will improve the stability of the facility. As part of the monitor designing, the HOM spectra in the cavities of the 1.3 and 3.9 GHz cryo-modules installed in the European XFEL injector have been measured. This paper will present their dependence on the beam position. The variation in the modal distribution from cavity to cavity will be discussed. Based on the results, initial phase measurements based on a fast oscilloscope have been made.
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spelling cern-22687672019-09-30T06:29:59Z http://cds.cern.ch/record/2268767 eng Baboi, Nicoletta Hellert, Thorsten Shi, Liangliang Wamsat, Thomas, DESY Jones, Roger M Joshi, Nirav HOM characterization for beam diagnostics at the european XFEL injector Accelerators and Storage Rings 12: Innovative Radio Frequency Technologies (RF) 12.1: Coordination and Communication Higher Order Modes (HOM) excited by bunched electron beams in accelerating cavities carry information about the beam position and phase. This principle is used at the FLASH facility, at DESY, for beam position monitoring in 1.3 and 3.9 GHz cavities. Dipole modes, which depend on the beam offset, are used. Similar monitors are now under design for the European XFEL. In addition to beam position, the beam phase with respect to the accelerating RF will be monitored using monopole modes from the first higher order monopole band. The HOM signals are available from two couplers installed on each cavity. Their monitoring will allow the on-line tracking of the phase stability over time, and we anticipate that it will improve the stability of the facility. As part of the monitor designing, the HOM spectra in the cavities of the 1.3 and 3.9 GHz cryo-modules installed in the European XFEL injector have been measured. This paper will present their dependence on the beam position. The variation in the modal distribution from cavity to cavity will be discussed. Based on the results, initial phase measurements based on a fast oscilloscope have been made. info:eu-repo/grantAgreement/EC/FP7/312453 info:eu-repo/semantics/openAccess Education Level info:eu-repo/semantics/article http://cds.cern.ch/record/2268767 2017
spellingShingle Accelerators and Storage Rings
12: Innovative Radio Frequency Technologies (RF)
12.1: Coordination and Communication
Baboi, Nicoletta
Hellert, Thorsten
Shi, Liangliang
Wamsat, Thomas, DESY
Jones, Roger M
Joshi, Nirav
HOM characterization for beam diagnostics at the european XFEL injector
title HOM characterization for beam diagnostics at the european XFEL injector
title_full HOM characterization for beam diagnostics at the european XFEL injector
title_fullStr HOM characterization for beam diagnostics at the european XFEL injector
title_full_unstemmed HOM characterization for beam diagnostics at the european XFEL injector
title_short HOM characterization for beam diagnostics at the european XFEL injector
title_sort hom characterization for beam diagnostics at the european xfel injector
topic Accelerators and Storage Rings
12: Innovative Radio Frequency Technologies (RF)
12.1: Coordination and Communication
url http://cds.cern.ch/record/2268767
http://cds.cern.ch/record/2268767
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