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Energy Deposition in the Betatron Collimation Insertion of the 100 TeV Future Circular Collider - CERN Document Server
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In this context, the collimation system has to deal with extremely tight requirements to prevent quenches and material damage. A first layout of the betatron cleaning insertion was conceived, adapting the present LHC collimation system to the FCC lattice. A crucial ingredient to assess its performance, in particular to estimate the robustness of the protection devices and the load on the downstream elements, is represented by the simulation of the particle shower generated at the collimators, allowing detailed energy deposition estimations. This paper presents the first results of the simulation chain starting from the proton losses generated with the Sixtrack-FLUKA coupling, as currently done for the present LHC and for its upgrade. Expectations in terms of total power, peak power density and integrated dose on the different accelerator components are presented. Besana, Maria Ilaria; Bahamonde Castro, Cristina; Bertarelli, Alessandro; Bruce, Roderik; Carra, Federico; Cerutti, Francesco; Ferrari, Alfredo; Fiascaris, Maria; Lechner, Anton; Mereghetti, Alessio; Redaelli, Stefano; Skordis, Eleftherios; Vlachoudis, Vasilis" /> <meta name="keywords" content="dipole, insertion, proton, betatron, simulation" /> <script type="text/javascript" src="http://cds.cern.ch/js/jquery.min.js"></script> <!-- WebNews CSS library --> <link rel="stylesheet" href="http://cds.cern.ch/img/webnews.css" type="text/css" /> <!-- WebNews JS library --> <script type="text/javascript" src="http://cds.cern.ch/js/webnews.js?v=20131009"></script> <meta property="fb:app_id" content="137353533001720"/> <!-- GoogleScholar --> <meta content="JACoW : Energy Deposition in the Betatron Collimation Insertion of the 100 TeV Future Circular Collider" name="citation_title" /> <meta content="Besana, Maria Ilaria" name="citation_author" /> <meta content="Bertarelli, Alessandro" name="citation_author" /> <meta content="Fiascaris, Maria" name="citation_author" /> <meta content="Cerutti, Francesco" name="citation_author" /> <meta content="Redaelli, Stefano" name="citation_author" /> <meta content="Vlachoudis, Vasilis" name="citation_author" /> <meta content="Bruce, Roderik" name="citation_author" /> <meta content="Carra, Federico" name="citation_author" /> <meta content="Mereghetti, Alessio" name="citation_author" /> <meta content="Bahamonde Castro, Cristina" name="citation_author" /> <meta content="Ferrari, Alfredo" name="citation_author" /> <meta content="Skordis, Eleftherios" name="citation_author" /> <meta content="Lechner, Anton" name="citation_author" /> <meta content="10.18429/JACoW-IPAC2017-MOPAB003" name="citation_doi" /> <meta content="MOPAB003" name="citation_firstpage" /> <meta content="2017" name="citation_publication_date" /> <meta name="citation_online_date" content="2017/10/06"> <meta content="CERN-ACC-2017-303" name="citation_technical_report_number" /> <meta content="10.18429/JACoW-IPAC2017-MOPAB003" name="citation_doi" /> <meta name="citation_pdf_url" content="http://cds.cern.ch/record/2287336/files/mopab003.pdf" /> <!-- OpenGraph --> <meta content="JACoW" property="og:title" /> <meta content="Energy Deposition in the Betatron Collimation Insertion of the 100 TeV Future Circular Collider" property="og:title" /> <meta content="website" property="og:type" /> <meta content="website" property="og:type" /> <meta content="http://cds.cern.ch/record/2287336" property="og:url" /> <meta content="CERN Document Server" property="og:site_name" /> <meta content="JACoW" property="og:description" /> <meta content="The FCC proton beam is designed to carry a total energy of about 8500 MJ, a factor of 20 above the LHC. In this context, the collimation system has to deal with extremely tight requirements to prevent quenches and material damage. A first layout of the betatron cleaning insertion was conceived, adapting the present LHC collimation system to the FCC lattice. A crucial ingredient to assess its performance, in particular to estimate the robustness of the protection devices and the load on the downstream elements, is represented by the simulation of the particle shower generated at the collimators, allowing detailed energy deposition estimations. This paper presents the first results of the simulation chain starting from the proton losses generated with the Sixtrack-FLUKA coupling, as currently done for the present LHC and for its upgrade. Expectations in terms of total power, peak power density and integrated dose on the different accelerator components are presented." property="og:description" /> <!-- Twitter Card --> <meta content="summary" name="twitter:card" /> <meta content="summary" name="twitter:card" /> <style></style> </head> <body class="CERN32Document32Server search" lang="no"> <!-- toolbar starts --> <div id="cern-toolbar"> <h1><a href="http://cern.ch" title="CERN">CERN <span>Accelerating science</span></a></h1> <ul> <li class="cern-accountlinks"><a class="cern-account" href="https://cds.cern.ch/youraccount/login?ln=no&referer=http%3A//cds.cern.ch/record/2287336/export/hm%3Fln%3Dno" title="Sign in to your CERN account">Sign in</a></li> <li><a class="cern-directory" href="http://cern.ch/directory" title="Search CERN resources and browse the directory">Directory</a></li> </ul> </div> <!-- toolbar ends --> <!-- Nav header starts--> <div role="banner" class="clearfix" id="header"> <div class="header-inner inner"> <hgroup class="clearfix"> <h2 id="site-name"> <a rel="home" title="Home" href="/"><span>CERN Document Server</span></a> </h2> <h3 id="site-slogan">Access articles, reports and multimedia content in HEP</h3> </hgroup><!-- /#name-and-slogan --> <div role="navigation" id="main-navigation" class="cdsmenu"> <h2 class="element-invisible">Main menu</h2><ul class="links inline clearfix"> <li class="menu-386 first active-trail"><a class="active-trail" href="http://cds.cern.ch/?ln=no">Søk</a></li> <li class="menu-444 "><a class="" title="" href="http://cds.cern.ch/submit?ln=no">Send inn</a></li> <li class="menu-426 "><a class="" href="http://cds.cern.ch/help/?ln=no">Hjelp</a></li> <li class="leaf hassubcdsmenu"> <a hreflang="en" class="header" href="https://cds.cern.ch/youraccount/display?ln=no">Brukerinnstillinger</a> <ul class="subsubcdsmenu"><li><a href="https://cds.cern.ch/youralerts/list?ln=no">Your alerts</a></li><li><a href="https://cds.cern.ch/yourbaskets/display?ln=no">Your baskets</a></li><li><a href="https://cds.cern.ch/yourcomments?ln=no">Your comments</a></li><li><a href="https://cds.cern.ch/youralerts/display?ln=no">Your searches</a></li></ul></li> </ul> </div> </div> </div> <!-- Nav header ends--> <table class="navtrailbox"> <tr> <td class="navtrailboxbody"> <a href="/?ln=no" class="navtrail">Hovedsiden</a> > <a class="navtrail" href="/record/2287336">Energy Deposition in the Betatron Collimation Insertion of the 100 TeV Future Circular Collider</a> > HTML MARC </td> </tr> </table> </div> <div class="pagebody"><div class="pagebodystripemiddle"> <pre style="margin: 1em 0px;">002287336 001__ 2287336 002287336 003__ SzGeCERN 002287336 005__ 20180328092513.0 002287336 0247_ $$2DOI$$9JACoW$$a10.18429/JACoW-IPAC2017-MOPAB003 002287336 0248_ $$aoai:inspirehep.net:1626187$$pcerncds:CERN:FULLTEXT$$pcerncds:FULLTEXT$$pcerncds:CERN$$qINSPIRE:HEP$$qForCDS 002287336 035__ $$9http://inspirehep.net/oai2d$$aoai:inspirehep.net:1626187$$d2017-10-05T10:42:54Z$$h2017-10-06T04:00:04Z$$mmarcxml 002287336 035__ $$9Inspire$$a1626187 002287336 041__ $$aeng 002287336 088__ $$aCERN-ACC-2017-303 002287336 100__ $$aBesana, Maria Ilaria$$iINSPIRE-00211473$$jJACoW-00085451$$uCERN 002287336 245__ $$9JACoW$$aEnergy Deposition in the Betatron Collimation Insertion of the 100 TeV Future Circular Collider 002287336 260__ $$c2017 002287336 300__ $$a4 p 002287336 520__ $$9JACoW$$aThe FCC proton beam is designed to carry a total energy of about 8500 MJ, a factor of 20 above the LHC. In this context, the collimation system has to deal with extremely tight requirements to prevent quenches and material damage. A first layout of the betatron cleaning insertion was conceived, adapting the present LHC collimation system to the FCC lattice. A crucial ingredient to assess its performance, in particular to estimate the robustness of the protection devices and the load on the downstream elements, is represented by the simulation of the particle shower generated at the collimators, allowing detailed energy deposition estimations. This paper presents the first results of the simulation chain starting from the proton losses generated with the Sixtrack-FLUKA coupling, as currently done for the present LHC and for its upgrade. Expectations in terms of total power, peak power density and integrated dose on the different accelerator components are presented. 002287336 540__ $$9JACoW$$aCC-BY-3.0$$uhttp://creativecommons.org/licenses/by/3.0/ 002287336 65017 $$2SzGeCERN$$aAccelerators and Storage Rings 002287336 6531_ $$2JACoW$$adipole 002287336 6531_ $$2JACoW$$ainsertion 002287336 6531_ $$2JACoW$$aproton 002287336 6531_ $$2JACoW$$abetatron 002287336 6531_ $$2JACoW$$asimulation 002287336 690C_ $$aCERN 002287336 700__ $$aBahamonde Castro, Cristina$$jJACoW-00085651$$uCERN 002287336 700__ $$aBertarelli, Alessandro$$jJACoW-00005409$$malessandro.bertarelli@cern.ch$$uCERN 002287336 700__ $$aBruce, Roderik$$iINSPIRE-00373385$$jJACoW-00011524$$uCERN 002287336 700__ $$aCarra, Federico$$jJACoW-00046645$$mfederico.carra@cern.ch$$uCERN 002287336 700__ $$aCerutti, Francesco$$iINSPIRE-00344024$$jJACoW-00032797$$uCERN 002287336 700__ $$aFerrari, Alfredo$$jJACoW-00005411$$malfredo.ferrari@cern.ch$$uCERN 002287336 700__ $$aFiascaris, Maria$$iINSPIRE-00214245$$jJACoW-00085859$$uCERN 002287336 700__ $$aLechner, Anton$$jJACoW-00052129$$manton.lechner@cern.ch$$uCERN 002287336 700__ $$aMereghetti, Alessio$$jJACoW-00036877$$malessio.mereghetti@cern.ch$$uCERN 002287336 700__ $$aRedaelli, Stefano$$iINSPIRE-00373392$$jJACoW-00001564$$uCERN 002287336 700__ $$aSkordis, Eleftherios$$jJACoW-00060489$$meleftherios.skordis@cern.ch$$uCERN 002287336 700__ $$aVlachoudis, Vasilis$$jJACoW-00005407$$mvasilis.vlachoudis@cern.ch$$uCERN 002287336 773__ $$cMOPAB003$$qIPAC2017$$wC17-05-14$$y2017 002287336 8564_ $$81357203$$s670444$$uhttp://cds.cern.ch/record/2287336/files/mopab003.pdf 002287336 960__ $$a13 002287336 962__ $$b2263434$$kMOPAB003$$ncopenhagen20170514 002287336 980__ $$aARTICLE 002287336 980__ $$aConferencePaper 002287336 999C6 $$a0-0-0-1-0-0-1$$t2017-09-28 22:26:23$$vcontent.pdf;1$$vInvenio/1.1.2.1260-aa76f refextract/1.5.44 002287336 999C5 $$hA. Chancé et al.$$min Proc. 7th Int. Particle Accelerator Conf. (IPAC’16), Busan, Korea, May, paper TUMPW020, pp. 1470-1472$$o1$$tStatus of the beam optics of the Future Hadron-Hadron Collider FCC-HH$$y2016 002287336 999C5 $$hM. Fiascaris, R. Bruce, D. Mirarchi, and S. Redaelli$$min Proc. 7th Int. Particle Accelerator Conf. (IPAC’16), Busan, Korea, May, paper WEPMW006, pp. 2423-2426$$o2$$tFirst design of a proton collimation system for 50 TeV FCC-hh$$y2016 002287336 999C5 $$0478386$$hJ. B. Jeanneret$$o3$$sPhys.Rev.ST Accel.Beams,1,081001$$tOptics of a two stage collimation system$$y1998 002287336 999C5 $$hR. Bruce, A. Marsili, and S. Redaelli$$min Proc. 5th Int. Particle Accelerator Conf. (IPAC’14), Dresden, Germany, June, paper MOPRO042, pp. 170-173$$o4$$tCleaning performance with 11 T dipoles and local dispersion suppressor collimation at the LHC$$y2014 002287336 999C5 $$hE. Skordis et al.$$min Proc. 6th Int. Particle Accelerator Conf. (IPAC’15), Richmond, Virginia, USA, paper TUPTY046, pp. 2116-2119$$o5$$tImpact of Beam Losses in the LHC Collimation Regions 002287336 999C5 $$hA. Mereghetti et al.$$min Proc. 4th Int. Particle Accelerator Conf. (IPAC’13), Shanghai, China, May, paper WEPEA064, pp. 2657-2659$$o6$$tSixTrack-FLUKA active coupling for the upgrade of the SPS scrapers$$y2013 002287336 999C5 $$hA. Mereghetti et al.$$mpresented at the 7th Int. Particle Accelerator Conf. (IPAC’17), Copenhagen, Denmark, May, paper THPAB046$$o7$$tSixTrack for cleaning studies: 2017 updates$$y2017 002287336 999C5 $$hS. Roesler, R. Engel, and J. Ranft$$min Proc. Monte Carlo 2000 Conference, Lisbon, Portugal, Oct. 2000, A. Kling, F. Barao, M. Nakagawa, L. Tavora, P. Vaz (eds.) -Verlag Berlin, pp. 1033-1038$$o8$$pSpringer$$tThe Monte Carlo event generator DPMJET-III$$y2001 002287336 999C5 $$01409583$$hA. Fedynitch and R. Engel$$min Proc. 14th International Conference on Nuclear Reaction Mechanisms, Varenna, Italy, Jun. F. Cerutti, M. Chadwick, A. Ferrari, T. Kawano and P. Schoofs (eds.) (CERN, Geneva,), pp. 291-299$$o9$$rCERN-PROCEEDINGS-2015-001$$tRevision of the high energy hadronic interaction models PHOJET/DPMJETIII$$y2015 002287336 999C5 $$0701721$$hA. Ferrari, P.R. Sala, A. Fassò, and J. Ranft$$mRep INFN/TC 05/11 Oct$$o10$$rCERN-2005-10$$rSLAC-R-773$$tFLUKA: a multi-particle transport code$$y2005 002287336 999C5 $$01421238$$hG. Battistoni et al.$$o11$$sAnnals Nucl.Energy,82,10-18$$tOverview of the FLUKA code$$y2015 002287336 999C5 $$hN. Mariani and P. Fessia$$mevent/508156/attachments/1241465/1825879/MQW_ Strategy_and_Testing_V0.2.pdf$$o12$$uhttps://indico.cern.ch/ 002287336 999C5 $$hA. Bertarelli, F. Carra, N. Mariani and S. Bizzaro$$min Tungsten, Refractory and Hardmetals Conference, Orlando, May$$o13$$tDevelopment and testing of novel advanced materials with very high thermal shock resistance$$y2014 002287336 999C5 $$hE. Quaranta et al.$$min Proc. 7th Int. Particle Accelerator Conf. (IPAC’16), Busan, Korea, May, paper WEPMW031, pp. 2498-2501$$o14$$tTowards optimum material choices for the HL-LHC collimator upgrade$$y2016 002287336 999C5 $$hT. R. Furness$$m606734/timetable/#20170131$$o15$$uhttps://indico.cern.ch/event/ 002287336 999C5 $$hF. Carra et al.$$i978-3-95450-182-3$$mpresented at the 7th Int. Particle Accelerator Conf. (IPAC’17), Copenhagen, Denmark, May, paper MOPAB005. Proceedings of IPAC, Copenhagen, Denmark MOPAB003 01 Circular and Linear Colliders T19 Collimation 71 Copyright©CC-BY-3.0andbytherespectiveauthors$$o16$$tThe MULTIMAT experiment at CERN HiRadMat acility: advanced testing of novel materials and instrumentation for HL-LHC collimators$$y2017</pre></div></div> <footer id="footer" class="pagefooter clearfix"> <!-- replaced page footer --> <div class="pagefooterstripeleft"> CERN Document Server :: <a class="footer" href="http://cds.cern.ch/?ln=no">Søk</a> :: <a class="footer" href="http://cds.cern.ch/submit?ln=no">Send inn</a> :: <a class="footer" href="https://cds.cern.ch/youraccount/display?ln=no">Brukerinnstillinger</a> :: <a class="footer" href="http://cds.cern.ch/help/?ln=no">Hjelp</a> :: <a class="footer" href="https://cern.service-now.com/service-portal?id=privacy_policy&se=CDS-Service" target="_blank">Privacy Notice</a> :: <a class="footer" href="https://repository.cern/content-policy" target="_blank">Content Policy</a> :: <a class="footer" href="https://repository.cern/terms" target="_blank">Terms and Conditions</a> <br /> Powered by <a class="footer" href="http://invenio-software.org/">Invenio</a> <br /> Vedlikeholdt av <a class="footer" href="https://cern.service-now.com/service-portal?id=service_element&name=CDS-Service">CDS Service</a> - Need help? 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