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Pulse Forming Network Conceptual Design for the Proposed PS Multi-Turn Extraction System

A five-turn continuous extraction system is currently used to transfer the proton beam from the CERN Proton Synchrotron (PS) to the Super Proton Synchrotron (SPS). The present approach, which is based on cutting the filament beam into 5 slices using an electrostatic septum, causes inherent losses of...

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Detalles Bibliográficos
Autores principales: Barnes, M J, Fowler, T, Metzmacher, K, Sermeus, L
Lenguaje:eng
Publicado: 2007
Materias:
Acceso en línea:http://cds.cern.ch/record/1063369
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author Barnes, M J
Fowler, T
Metzmacher, K
Sermeus, L
author_facet Barnes, M J
Fowler, T
Metzmacher, K
Sermeus, L
author_sort Barnes, M J
collection CERN
description A five-turn continuous extraction system is currently used to transfer the proton beam from the CERN Proton Synchrotron (PS) to the Super Proton Synchrotron (SPS). The present approach, which is based on cutting the filament beam into 5 slices using an electrostatic septum, causes inherent losses of about 15% of the extracted beam and non optimal betatronic matching for the different slices in the receiving machine. This will be an even more serious drawback when the beam intensity needs to be increased for the CERN Neutrinos to Gran Sasso (CNGS) facility. To overcome this, a novel Multi-Turn Extraction (MTE) scheme has been proposed, where the beam is separated, prior to extraction, into a central beam core and four islands by means of elements such as sextupoles and octupoles. Each beamlet is ejected using fast kickers and a magnetic septum. For the MTE kickers, two new pulse generators are required, each containing a lumped element Pulse Forming Network (PFN) of 12.5 ¿, 80 kV and 10.5 ¿s. For cost reasons, it is envisaged to re-use existing 15 ¿ transmission line kicker magnets. The PFN characteristic impedance deliberately mismatches that of the magnets to allow a higher maximum available kick. The PFN design has been optimized such that undesirable side-effects of the impedance mismatch, on kick rise-time and flat-top, remain within acceptable limits. The conceptual design for the MTE PFN is presented.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2007
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spelling cern-10633692019-09-30T06:29:59Zhttp://cds.cern.ch/record/1063369engBarnes, M JFowler, TMetzmacher, KSermeus, LPulse Forming Network Conceptual Design for the Proposed PS Multi-Turn Extraction SystemAccelerators and Storage RingsA five-turn continuous extraction system is currently used to transfer the proton beam from the CERN Proton Synchrotron (PS) to the Super Proton Synchrotron (SPS). The present approach, which is based on cutting the filament beam into 5 slices using an electrostatic septum, causes inherent losses of about 15% of the extracted beam and non optimal betatronic matching for the different slices in the receiving machine. This will be an even more serious drawback when the beam intensity needs to be increased for the CERN Neutrinos to Gran Sasso (CNGS) facility. To overcome this, a novel Multi-Turn Extraction (MTE) scheme has been proposed, where the beam is separated, prior to extraction, into a central beam core and four islands by means of elements such as sextupoles and octupoles. Each beamlet is ejected using fast kickers and a magnetic septum. For the MTE kickers, two new pulse generators are required, each containing a lumped element Pulse Forming Network (PFN) of 12.5 ¿, 80 kV and 10.5 ¿s. For cost reasons, it is envisaged to re-use existing 15 ¿ transmission line kicker magnets. The PFN characteristic impedance deliberately mismatches that of the magnets to allow a higher maximum available kick. The PFN design has been optimized such that undesirable side-effects of the impedance mismatch, on kick rise-time and flat-top, remain within acceptable limits. The conceptual design for the MTE PFN is presented.oai:cds.cern.ch:10633692007
spellingShingle Accelerators and Storage Rings
Barnes, M J
Fowler, T
Metzmacher, K
Sermeus, L
Pulse Forming Network Conceptual Design for the Proposed PS Multi-Turn Extraction System
title Pulse Forming Network Conceptual Design for the Proposed PS Multi-Turn Extraction System
title_full Pulse Forming Network Conceptual Design for the Proposed PS Multi-Turn Extraction System
title_fullStr Pulse Forming Network Conceptual Design for the Proposed PS Multi-Turn Extraction System
title_full_unstemmed Pulse Forming Network Conceptual Design for the Proposed PS Multi-Turn Extraction System
title_short Pulse Forming Network Conceptual Design for the Proposed PS Multi-Turn Extraction System
title_sort pulse forming network conceptual design for the proposed ps multi-turn extraction system
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1063369
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AT fowlert pulseformingnetworkconceptualdesignfortheproposedpsmultiturnextractionsystem
AT metzmacherk pulseformingnetworkconceptualdesignfortheproposedpsmultiturnextractionsystem
AT sermeusl pulseformingnetworkconceptualdesignfortheproposedpsmultiturnextractionsystem