<xml>
  <records>
    <record>
       <contributors>
          <authors>
             <author>Al-Najdawi, M.A.</author>
             <author>Al-Mohammad, H.</author>
             <author>Huttel, E.</author>
             <author>Makahleh, F.</author>
             <author>Shehab, M.M.</author>
          </authors>
       </contributors>
       <titles>
          <title>
             Vacuum System of SESAME Storage Ring
          </title>
       </titles>
		 <publisher>JACoW Publishing</publisher>
       <pub-location>Geneva, Switzerland</pub-location>
		 <isbn>978-3-95450-188-5</isbn>
		 <electronic-resource-num>10.18429/JACoW-MEDSI2016-MOPE28</electronic-resource-num>
		 <language>English</language>
		 <pages>71-73</pages>
       <pages>MOPE28</pages>
       <keywords>
          <keyword>ion</keyword>
          <keyword>vacuum</keyword>
          <keyword>storage-ring</keyword>
          <keyword>simulation</keyword>
          <keyword>injection</keyword>
       </keywords>
       <work-type>Contribution to a conference proceedings</work-type>
       <dates>
          <year>2017</year>
          <pub-dates>
             <date>2017-06</date>
          </pub-dates>
       </dates>
       <urls>
          <related-urls>
              <url>https://doi.org/10.18429/JACoW-MEDSI2016-MOPE28</url>
              <url>http://jacow.org/medsi2016/papers/mope28.pdf</url>
          </related-urls>
       </urls>
       <abstract>
          SESAME* is a third-generation synchrotron light source under construction near Amman (Jordan). The storage ring has 16 Dipole arc chambers, 8 short and 8 long straight chambers. The general layout and detailed design of the vacuum chambers, crotch absorbers, RF bellows, injection and RF sections will be presented in this contribution, also the testing of the chambers prototype, bake out process and final installation.
       </abstract>
    </record>
  </records>
</xml>
