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Studies for Upgrading and Optimising the CLEAR Beamline, and Generating Uniform Electron-Beam Profiles for Irradiation Experiments - CERN Document Server
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The CERN Linear Electron Accelerator for Research (CLEAR) is an irradiation facility that produces 200 MeV beams of electrons with parameters tuned to the needs of users. One of the most commonly requested beam parameters is for bunch lengths of less than 1 ps, which was not previously possible for high-charge bunches. In this thesis, the ability to compress high-charge bunches to sub-ps bunch lengths, using the velocity bunching technique, is shown in simulation. The simulations are then verified with experimental measurements taken at CLEAR. The ability to reduce the emittance of the beam during compression is also presented. Potential upgrades to the CLEAR facility are proposed, namely a new laser system and the installation of an additional klystron. The benefits of these upgrades are explored in simulation, demonstrating that they would allow the production of shorter bunches, with lower energy spread, and lower emittance. It is shown that by using a modified version of the CLEAR photoinjector it is possible to produce bunches with a uniform transverse profile using a simple Gaussian laser with a 1 ps pulse length. A compact irradiation facility was proposed consisting of the CLEAR photoinjector, an X-band linac using cavities similar to those developed for the Compact Linear Collider, and a quadrupole matching section. It was shown that such a facility could produce beams of different sizes with uniform beam profiles. The stability of such a facility was investigated, demonstrating that beam jitters do not significantly reduce beam uniformity. 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It is shown that by using a modified version of the CLEAR photoinjector it is possible to produce bunches with a uniform transverse profile using a simple Gaussian laser with a 1 ps pulse length. A compact irradiation facility was proposed consisting of the CLEAR photoinjector, an X-band linac using cavities similar to those developed for the Compact Linear Collider, and a quadrupole matching section. It was shown that such a facility could produce beams of different sizes with uniform beam profiles. The stability of such a facility was investigated, demonstrating that beam jitters do not significantly reduce beam uniformity." property="og:description" /> <!-- Twitter Card --> <meta content="summary" name="twitter:card" /> <style></style> </head> <body class="CERN32Document32Server search" lang="pl"> <!-- 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=pl&referer=https%3A//cds.cern.ch/record/2863106%3Fln%3Dpl" 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="https://cds.cern.ch/?ln=pl">Szukaj</a></li> <li class="menu-444 "><a class="" title="" href="https://cds.cern.ch/submit?ln=pl">Dodaj</a></li> <li class="menu-426 "><a class="" href="https://cds.cern.ch/help/?ln=pl">Pomoc</a></li> <li class="leaf hassubcdsmenu"> <a hreflang="en" class="header" href="https://cds.cern.ch/youraccount/display?ln=pl">Ustawienia</a> <ul class="subsubcdsmenu"><li><a href="https://cds.cern.ch/youralerts/list?ln=pl">Your alerts</a></li><li><a href="https://cds.cern.ch/yourbaskets/display?ln=pl">Your baskets</a></li><li><a href="https://cds.cern.ch/yourcomments?ln=pl">Your comments</a></li><li><a href="https://cds.cern.ch/youralerts/display?ln=pl">Your searches</a></li></ul></li> </ul> </div> </div> </div> <!-- Nav header ends--> <table class="navtrailbox"> <tr> <td class="navtrailboxbody"> <a href="/?ln=pl" class="navtrail">Główna</a> > Studies for Upgrading and Optimising the CLEAR Beamline, and Generating Uniform Electron-Beam Profiles for Irradiation Experiments </td> </tr> </table> </div> <div class="pagebody"><div class="pagebodystripemiddle"> <div class="detailedrecordbox"> <div class="detailedrecordtabs"> <div> <ul class="detailedrecordtabs"><li class="on first"><a href="/record/2863106/?ln=pl">Informacja </a></li><li class=""><a href="/record/2863106/files?ln=pl">Files </a></li></ul> <div id="tabsSpacer" style="clear:both;height:0px"> </div></div> </div> <div class="detailedrecordboxcontent"> <div class="top-left-folded"></div> <div class="top-right-folded"></div> <div class="inside"> <!--<div style="height:0.1em;"> </div> <p class="notopgap"> </p>--> <abbr class="unapi-id" title="2863106"></abbr> <style type="text/css"> <!-- ul.detailedrecordtabs li.on a{background-color:#4D94CC;color:#fff !important;border-bottom:1px solid #4D94CC!important;} div.detailedrecordboxcontent {padding-top:0px !important;} --> </style> <script type="text/javascript" src="/js/pdf-previewer-append-to-table.js"></script> <table class="formatRecordTableFullWidth" > <tr> <td class="formatRecordHeader" style="background-image: url('https://cds.cern.ch/img/journals.jpg');" colspan="2"> Thesis </td> </tr> <tr><td class="formatRecordLabel"> Report number </td><td style="padding-left:5px;">CERN-THESIS-2022-365</td></tr> <tr><td class="formatRecordLabel"> Title </td><td style="padding-left:5px;"><b>Studies for Upgrading and Optimising the CLEAR Beamline, and Generating Uniform Electron-Beam Profiles for Irradiation Experiments</b></td></tr> <tr><td class="formatRecordLabel"><span style="white-space:nowrap;">Author(s)</span> </td><td style="padding-left:5px;"><a href="https://cds.cern.ch/search?f=author&p=Dyks%2C%20Luke%20Aidan&ln=pl">Dyks, Luke Aidan</a> (Oxford U.)</td></tr> <tr><td class="formatRecordLabel"> Publication </td><td style="padding-left:5px;">170.</td></tr> <tr><td class="formatRecordLabel"> Thesis note </td><td style="padding-left:5px;">PhD : Oxford U. : 2022</td></tr> <tr><td class="formatRecordLabel"> Thesis supervisor(s) </td><td style="padding-left:5px;"><a href="/search?f=author&p=Corsini, Roberto">Corsini, Roberto</a> ; <a href="/search?f=author&p=Burrows, Philip">Burrows, Philip</a></td></tr> <tr><td class="formatRecordLabel"> Note </td><td style="padding-left:5px;">Presented 19 Aug 2022</td></tr> <tr><td class="formatRecordLabel"> Subject category </td><td style="padding-left:5px;">Accelerators and Storage Rings</td></tr> <tr><td class="formatRecordLabel"> Accelerator/Facility, Experiment </td><td style="padding-left:5px;"><a href="https://cds.cern.ch/search?p=CERN%20Linac&f=693__a">CERN Linac</a><br/><a href="https://cds.cern.ch/search?p=CLIC&f=693__a">CLIC</a></td></tr> <tr><td class="formatRecordLabel"> Abstract </td><td style="padding-left:5px;">Irradiation facilities around the world are used to investigate the effect of high-energy particle beams on electronics, to study the makeup of historical objects and art, and for medical applications, notably radiotherapy. The CERN Linear Electron Accelerator for Research (CLEAR) is an irradiation facility that produces 200 MeV beams of electrons with parameters tuned to the needs of users. One of the most commonly requested beam parameters is for bunch lengths of less than 1 ps, which was not previously possible for high-charge bunches. In this thesis, the ability to compress high-charge bunches to sub-ps bunch lengths, using the velocity bunching technique, is shown in simulation. The simulations are then verified with experimental measurements taken at CLEAR. The ability to reduce the emittance of the beam during compression is also presented. Potential upgrades to the CLEAR facility are proposed, namely a new laser system and the installation of an additional klystron. The benefits of these upgrades are explored in simulation, demonstrating that they would allow the production of shorter bunches, with lower energy spread, and lower emittance. It is shown that by using a modified version of the CLEAR photoinjector it is possible to produce bunches with a uniform transverse profile using a simple Gaussian laser with a 1 ps pulse length. A compact irradiation facility was proposed consisting of the CLEAR photoinjector, an X-band linac using cavities similar to those developed for the Compact Linear Collider, and a quadrupole matching section. It was shown that such a facility could produce beams of different sizes with uniform beam profiles. The stability of such a facility was investigated, demonstrating that beam jitters do not significantly reduce beam uniformity.</td></tr> </table> <br/>Corresponding record in: <a href="http://inspirehep.net/record/2675454">Inspire</a> <br/>Email contact: <a href="mailto:sylvia.dubourg@cern.ch">sylvia.dubourg@cern.ch</a> <small> </small> <small> </small> <br/><br/><div align="right"><div style="padding-bottom:2px;padding-top:30px;"><span class="moreinfo" style="margin-right:10px;"> <a href="" class="moreinfo">Back to search</a> </span></div></div> <div class="bottom-left-folded"><div class="recordlastmodifiedbox" style="position:relative;margin-left:1px"> Rekord stworzony 2023-06-27, ostatnia modyfikacja 2024-02-21</div></div> <div class="bottom-right-folded" style="text-align:right;padding-bottom:2px;"> <span class="moreinfo" style="margin-right:10px;"><a href="/search?ln=pl&p=recid%3A2863106&rm=wrd" class="moreinfo">Podobne rekordy</a></span></div> </div> </div> </div> <br/> <br /> <div class="detailedrecordminipanel"> <div class="top-left"></div><div class="top-right"></div> <div class="inside"> <div id="detailedrecordminipanelfile" style="width:33%;float:left;text-align:center;margin-top:0"> <div><small class="detailedRecordActions">Pełny tekst:</small> <br /><a href="/record/2863106/files/CERN-THESIS-2022-365.pdf"><img style="border:none" src="/img/file-icon-text-34x48.gif" alt="Pobierz pełny tekst" /><br />PDF</a><br /></div> </div> <div id="detailedrecordminipanelreview" style="width:30%;float:left;text-align:center"> </div> <div id="detailedrecordminipanelactions" style="width:36%;float:right;text-align:right;"> <ul class="detailedrecordactions"> <li><a href="/yourbaskets/add?ln=pl&recid=2863106">Dodaj do koszyka osobistego</a></li> <li>Wyeksportuj jako <a style="text-decoration:underline;font-weight:normal" href="/record/2863106/export/hx?ln=pl">BibTeX</a>, <a style="text-decoration:underline;font-weight:normal" href="/record/2863106/export/hm?ln=pl">MARC</a>, <a style="text-decoration:underline;font-weight:normal" href="/record/2863106/export/xm?ln=pl">MARCXML</a>, <a style="text-decoration:underline;font-weight:normal" href="/record/2863106/export/xd?ln=pl">DC</a>, <a style="text-decoration:underline;font-weight:normal" href="/record/2863106/export/xe?ln=pl">EndNote</a>, <!-- <a style="text-decoration:underline;font-weight:normal" href="/record/2863106/export/xe8x?ln=pl">EndNote (8-X)</a>,--> <a style="text-decoration:underline;font-weight:normal" href="/record/2863106/export/xn?ln=pl">NLM</a>, <a style="text-decoration:underline;font-weight:normal" href="/record/2863106/export/xw?ln=pl">RefWorks</a> </li> </ul> <div style='padding-left: 13px;'> <!-- JQuery Bookmark Button BEGIN --> <div id="bookmark"></div> <div id="bookmark_sciencewise"></div> <style type="text/css"> #bookmark_sciencewise, #bookmark {float: left;} #bookmark_sciencewise li {padding: 2px; width: 25px;} #bookmark_sciencewise ul, #bookmark ul {list-style-image: none;} </style> <script type="text/javascript" src="/js/jquery.bookmark.min.js"></script> <style type="text/css">@import "/css/jquery.bookmark.css";</style> <script type="text/javascript">// <![CDATA[ $.bookmark.addSite('sciencewise', 'ScienceWise.info', 'https://cds.cern.ch/img/sciencewise.png', 'en', 'bookmark', 'http://sciencewise.info/bookmarks/cds:2863106/add'); $('#bookmark_sciencewise').bookmark({sites: ['sciencewise']}); $('#bookmark').bookmark({ sites: ['facebook', 'twitter', 'linkedin', 'google_plusone'], icons: '/img/bookmarks.png', url: 'https://cds.cern.ch/record/2863106', addEmail: true, title: "Studies for Upgrading and Optimising the CLEAR Beamline, and Generating Uniform Electron-Beam Profiles for Irradiation Experiments", description: "Irradiation facilities around the world are used to investigate the effect of high-energy particle beams on electronics, to study the makeup of historical objects and art, and for medical applications, notably radiotherapy. The CERN Linear Electron Accelerator for Research (CLEAR) is an irradiation facility that produces 200 MeV beams of electrons with parameters tuned to the needs of users. One of the most commonly requested beam parameters is for bunch lengths of less than 1 ps, which was not previously possible for high-charge bunches. In this thesis, the ability to compress high-charge bunches to sub-ps bunch lengths, using the velocity bunching technique, is shown in simulation. The simulations are then verified with experimental measurements taken at CLEAR. The ability to reduce the emittance of the beam during compression is also presented. Potential upgrades to the CLEAR facility are proposed, namely a new laser system and the installation of an additional klystron. The benefits of these upgrades are explored in simulation, demonstrating that they would allow the production of shorter bunches, with lower energy spread, and lower emittance. It is shown that by using a modified version of the CLEAR photoinjector it is possible to produce bunches with a uniform transverse profile using a simple Gaussian laser with a 1 ps pulse length. A compact irradiation facility was proposed consisting of the CLEAR photoinjector, an X-band linac using cavities similar to those developed for the Compact Linear Collider, and a quadrupole matching section. It was shown that such a facility could produce beams of different sizes with uniform beam profiles. 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