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Reference: Bodenstein, RM, Burrows, PN, Snuverink, J et al., (2016). Intra-beam IP feedback studies for the 380 GeV CLIC beam delivery system.Citable link to this page:

 

Intra-beam IP feedback studies for the 380 GeV CLIC beam delivery system

Abstract: In its currently-envisaged initial stage, the Compact Linear Collider (CLIC) will collide beams with a 380 GeV center of mass energy. To maintain the luminosity within a few percent of the design value, beam stability at the interaction point (IP) must be controlled at the sub-nanometer level. To help achieve such control, use of an intra-pulse IP feedback system is planned. With CLIC's very short bunch spacing of 0.5 ns, and nominal pulse duration of 176 ns, this feedback system presents a significant technical challenge. Furthermore, as part of a study to optimize the design of the beam delivery system (BDS), several L* configurations have been studied. In this paper, we will review the IP feedback simulations for the 380 GeV machine for two L* configurations, and compare luminosity recovery performance with that of the original L* configuration in the 3 TeV machine.

Peer Review status:Peer reviewedPublication status:PublishedVersion:Accepted manuscriptConference Details: IPAC 2016Notes:Copyright © 2016 by JACoW – cc Creative Commons Attribution 3.0

Bibliographic Details

Publisher: Joint Accelerator Conferences Website

Publisher Website: http://www.jacow.org/

Host: IPAC 2016see more from them

Publication Website: http://accelconf.web.cern.ch/AccelConf/ipac2016/index.html

Issue Date: 2016-05Identifiers

Urn: uuid:0c80274b-2ef3-418d-af3d-f66a41553a2b

Isbn: 978-3-95450-147-2

Source identifier: 629294

Doi: https://doi.org/10.18429/JACoW-IPAC2016-WEPOR009 Item Description

Type: Conference;

Version: Accepted manuscriptKeywords: Beam Dynamics Beam Physics IP Feedback CLIC Accelerator Physics Tiny URL: pubs:629294

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Autor: Bodenstein, RM - institutionUniversity of Oxford Oxford, MPLS, Physics, Particle Physics - - - Burrows, PN - institutionUniversit

Fuente: https://ora.ox.ac.uk/objects/uuid:0c80274b-2ef3-418d-af3d-f66a41553a2b



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