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Position Resolution of Optical Fibre-Based Beam Loss Monitors Using Long Electron Pulses
Beam loss monitoring systems based on optical fibres (oBLM), have been under consideration for future colliders for several years. To distinguish losses between consecutive quadrupoles, a position resolution of less than 1 m is required. A resolution of better than 0.5 m has been achieved in machine...
Autores principales: | , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2016
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.18429/JACoW-IBIC2015-WEBLA03 http://cds.cern.ch/record/2263488 |
_version_ | 1780954306461040640 |
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author | Nebot Del Busto, Eduardo Boland, Mark Döbert, Steffen Domingues Sousa, Fernando Effinger, Ewald Farabolini, Wilfrid Holzer, Eva Barbara Kastriotou, Maria Rassool, Roger Viganò, William Welsch, Carsten |
author_facet | Nebot Del Busto, Eduardo Boland, Mark Döbert, Steffen Domingues Sousa, Fernando Effinger, Ewald Farabolini, Wilfrid Holzer, Eva Barbara Kastriotou, Maria Rassool, Roger Viganò, William Welsch, Carsten |
author_sort | Nebot Del Busto, Eduardo |
collection | CERN |
description | Beam loss monitoring systems based on optical fibres (oBLM), have been under consideration for future colliders for several years. To distinguish losses between consecutive quadrupoles, a position resolution of less than 1 m is required. A resolution of better than 0.5 m has been achieved in machines with single, nanosecond long pulses. For longer beam pulses, such as the ~150 ns CLIC pulse, the longitudinal length of signals in the fibre is close to the duration of the beam pulse itself which makes loss reconstruction very challenging. In this contribution, results from experiments into the position resolution of an oBLM based on long beam pulses are presented. These measurements have been performed at the CLIC Test Facility (CTF3) and the Australian Synchrotron Light Source (ASLS). In CTF3, controlled beam losses were created at different quadrupoles in the 28 m long decelerating Test Beam Line (TBL) LINAC by altering the current supplied or misaligning them. In ASLS the flexibility of the facility allowed the location of beam losses generated by single bunches to be studied as well as losses for longer bunch trains up to 600 ns in duration. |
id | oai-inspirehep.net-1480733 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2016 |
record_format | invenio |
spelling | oai-inspirehep.net-14807332019-09-30T06:29:59Zdoi:10.18429/JACoW-IBIC2015-WEBLA03http://cds.cern.ch/record/2263488engNebot Del Busto, EduardoBoland, MarkDöbert, SteffenDomingues Sousa, FernandoEffinger, EwaldFarabolini, WilfridHolzer, Eva BarbaraKastriotou, MariaRassool, RogerViganò, WilliamWelsch, CarstenPosition Resolution of Optical Fibre-Based Beam Loss Monitors Using Long Electron PulsesAccelerators and Storage RingsBeam loss monitoring systems based on optical fibres (oBLM), have been under consideration for future colliders for several years. To distinguish losses between consecutive quadrupoles, a position resolution of less than 1 m is required. A resolution of better than 0.5 m has been achieved in machines with single, nanosecond long pulses. For longer beam pulses, such as the ~150 ns CLIC pulse, the longitudinal length of signals in the fibre is close to the duration of the beam pulse itself which makes loss reconstruction very challenging. In this contribution, results from experiments into the position resolution of an oBLM based on long beam pulses are presented. These measurements have been performed at the CLIC Test Facility (CTF3) and the Australian Synchrotron Light Source (ASLS). In CTF3, controlled beam losses were created at different quadrupoles in the 28 m long decelerating Test Beam Line (TBL) LINAC by altering the current supplied or misaligning them. In ASLS the flexibility of the facility allowed the location of beam losses generated by single bunches to be studied as well as losses for longer bunch trains up to 600 ns in duration.oai:inspirehep.net:14807332016 |
spellingShingle | Accelerators and Storage Rings Nebot Del Busto, Eduardo Boland, Mark Döbert, Steffen Domingues Sousa, Fernando Effinger, Ewald Farabolini, Wilfrid Holzer, Eva Barbara Kastriotou, Maria Rassool, Roger Viganò, William Welsch, Carsten Position Resolution of Optical Fibre-Based Beam Loss Monitors Using Long Electron Pulses |
title | Position Resolution of Optical Fibre-Based Beam Loss Monitors Using Long Electron Pulses |
title_full | Position Resolution of Optical Fibre-Based Beam Loss Monitors Using Long Electron Pulses |
title_fullStr | Position Resolution of Optical Fibre-Based Beam Loss Monitors Using Long Electron Pulses |
title_full_unstemmed | Position Resolution of Optical Fibre-Based Beam Loss Monitors Using Long Electron Pulses |
title_short | Position Resolution of Optical Fibre-Based Beam Loss Monitors Using Long Electron Pulses |
title_sort | position resolution of optical fibre-based beam loss monitors using long electron pulses |
topic | Accelerators and Storage Rings |
url | https://dx.doi.org/10.18429/JACoW-IBIC2015-WEBLA03 http://cds.cern.ch/record/2263488 |
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