Cargando…

A Versatile Beam Loss Monitoring System for CLIC

The design of a potential CLIC beam loss monitoring (BLM) system presents multiple challenges. To successfully cover the 48 km of beamline, ionisation chambers and optical fibre BLMs are under investigation. The former fulfils all CLIC requirements but would need more than 40000 monitors to protect...

Descripción completa

Detalles Bibliográficos
Autores principales: Kastriotou, Maria, Döbert, Steffen, Farabolini, Wilfrid, Holzer, Eva Barbara, Nebot Del Busto, Eduardo, Tecker, Frank, Welsch, Carsten
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:https://dx.doi.org/10.18429/JACoW-IPAC2016-MOPMR024
http://cds.cern.ch/record/2207310
_version_ 1780951672136138752
author Kastriotou, Maria
Döbert, Steffen
Farabolini, Wilfrid
Holzer, Eva Barbara
Nebot Del Busto, Eduardo
Tecker, Frank
Welsch, Carsten
author_facet Kastriotou, Maria
Döbert, Steffen
Farabolini, Wilfrid
Holzer, Eva Barbara
Nebot Del Busto, Eduardo
Tecker, Frank
Welsch, Carsten
author_sort Kastriotou, Maria
collection CERN
description The design of a potential CLIC beam loss monitoring (BLM) system presents multiple challenges. To successfully cover the 48 km of beamline, ionisation chambers and optical fibre BLMs are under investigation. The former fulfils all CLIC requirements but would need more than 40000 monitors to protect the whole facility. For the latter, the capability of reconstructing the original loss position with a multi-bunch beam pulse and multiple loss locations still needs to be quantified. Two main sources of background for beam loss measurements are identified for CLIC. The two-beam accelerator scheme introduces so-called crosstalk, i.e. detection of losses originating in one beam line by the monitors protecting the other. Moreover, electrons emitted from the inner surface of RF cavities and boosted by the high RF gradients may produce signals in neighbouring BLMs, limiting their ability to detect real beam losses. This contribution presents the results of dedicated experiments performed in the CLIC Test Facility to quantify the position resolution of optical fibre BLMs in a multi-bunch, multi-loss scenario as well as the sensitivity limitations due to crosstalk and electron field emission.
id oai-inspirehep.net-1469585
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
record_format invenio
spelling oai-inspirehep.net-14695852023-07-20T15:06:20Zdoi:10.18429/JACoW-IPAC2016-MOPMR024http://cds.cern.ch/record/2207310engKastriotou, MariaDöbert, SteffenFarabolini, WilfridHolzer, Eva BarbaraNebot Del Busto, EduardoTecker, FrankWelsch, CarstenA Versatile Beam Loss Monitoring System for CLICAccelerators and Storage RingsThe design of a potential CLIC beam loss monitoring (BLM) system presents multiple challenges. To successfully cover the 48 km of beamline, ionisation chambers and optical fibre BLMs are under investigation. The former fulfils all CLIC requirements but would need more than 40000 monitors to protect the whole facility. For the latter, the capability of reconstructing the original loss position with a multi-bunch beam pulse and multiple loss locations still needs to be quantified. Two main sources of background for beam loss measurements are identified for CLIC. The two-beam accelerator scheme introduces so-called crosstalk, i.e. detection of losses originating in one beam line by the monitors protecting the other. Moreover, electrons emitted from the inner surface of RF cavities and boosted by the high RF gradients may produce signals in neighbouring BLMs, limiting their ability to detect real beam losses. This contribution presents the results of dedicated experiments performed in the CLIC Test Facility to quantify the position resolution of optical fibre BLMs in a multi-bunch, multi-loss scenario as well as the sensitivity limitations due to crosstalk and electron field emission.CERN-ACC-2016-315CLIC-Note-1087oai:inspirehep.net:14695852016
spellingShingle Accelerators and Storage Rings
Kastriotou, Maria
Döbert, Steffen
Farabolini, Wilfrid
Holzer, Eva Barbara
Nebot Del Busto, Eduardo
Tecker, Frank
Welsch, Carsten
A Versatile Beam Loss Monitoring System for CLIC
title A Versatile Beam Loss Monitoring System for CLIC
title_full A Versatile Beam Loss Monitoring System for CLIC
title_fullStr A Versatile Beam Loss Monitoring System for CLIC
title_full_unstemmed A Versatile Beam Loss Monitoring System for CLIC
title_short A Versatile Beam Loss Monitoring System for CLIC
title_sort versatile beam loss monitoring system for clic
topic Accelerators and Storage Rings
url https://dx.doi.org/10.18429/JACoW-IPAC2016-MOPMR024
http://cds.cern.ch/record/2207310
work_keys_str_mv AT kastriotoumaria aversatilebeamlossmonitoringsystemforclic
AT dobertsteffen aversatilebeamlossmonitoringsystemforclic
AT faraboliniwilfrid aversatilebeamlossmonitoringsystemforclic
AT holzerevabarbara aversatilebeamlossmonitoringsystemforclic
AT nebotdelbustoeduardo aversatilebeamlossmonitoringsystemforclic
AT teckerfrank aversatilebeamlossmonitoringsystemforclic
AT welschcarsten aversatilebeamlossmonitoringsystemforclic
AT kastriotoumaria versatilebeamlossmonitoringsystemforclic
AT dobertsteffen versatilebeamlossmonitoringsystemforclic
AT faraboliniwilfrid versatilebeamlossmonitoringsystemforclic
AT holzerevabarbara versatilebeamlossmonitoringsystemforclic
AT nebotdelbustoeduardo versatilebeamlossmonitoringsystemforclic
AT teckerfrank versatilebeamlossmonitoringsystemforclic
AT welschcarsten versatilebeamlossmonitoringsystemforclic