<xml>
  <records>
    <record>
       <contributors>
          <authors>
             <author>Sipahi, T.</author>
             <author>Biedron, S.</author>
             <author>Milton, S.V.</author>
          </authors>
       </contributors>
       <titles>
          <title>
             Wakefield Excitation in Power Extraction Cavity of Co-Linear X-Band Energy Booster in Time Domain With ACE3P
          </title>
       </titles>
		 <publisher>JACoW</publisher>
       <pub-location>Geneva, Switzerland</pub-location>
		 <isbn>978-3-95450-180-9</isbn>
		 <electronic-resource-num>10.18429/JACoW-NAPAC2016-MOPOB57</electronic-resource-num>
		 <language>English</language>
		 <pages>195-197</pages>
       <pages>MOPOB57</pages>
       <keywords>
          <keyword>ion</keyword>
          <keyword>cavity</keyword>
          <keyword>wakefield</keyword>
          <keyword>impedance</keyword>
          <keyword>extraction</keyword>
       </keywords>
       <work-type>Contribution to a conference proceedings</work-type>
       <dates>
          <year>2017</year>
          <pub-dates>
             <date>2017-01</date>
          </pub-dates>
       </dates>
       <urls>
          <related-urls>
              <url>http://dx.doi.org/10.18429/JACoW-NAPAC2016-MOPOB57</url>
              <url>https://jacow.org/napac2016/papers/mopob57.pdf</url>
          </related-urls>
       </urls>
       <abstract>
          We provide the general concept and the design details of our proposed Co-linear X-band Energy Booster (CXEB). Here, using the time domain solver T3P of the ACE3P Suite we provide the single bunch and multiple bunch wakefield excitation mechanism for the power build up when using a symmetric Gaussian bunch distribution in our traveling wave (TW) X-band power extraction cavity (PEC). Finally, we determine the achievable X-band power at the end of the PEC structure.
       </abstract>
    </record>
  </records>
</xml>
