<xml>
  <records>
    <record>
       <contributors>
          <authors>
             <author>Gavrilov, S.A.</author>
             <author>Feschenko, A.</author>
          </authors>
       </contributors>
       <titles>
          <title>
             Design and Development of Bunch Shape Monitor for FRIB MSU
          </title>
       </titles>
		 <publisher>JACoW</publisher>
       <pub-location>Geneva, Switzerland</pub-location>
		 <isbn>978-3-95450-192-2</isbn>
		 <electronic-resource-num>10.18429/JACoW-IBIC2017-TUPCC13</electronic-resource-num>
		 <language>English</language>
		 <pages>179-181</pages>
       <pages>TUPCC13</pages>
       <keywords>
          <keyword>ion</keyword>
          <keyword>electron</keyword>
          <keyword>target</keyword>
          <keyword>focusing</keyword>
          <keyword>dipole</keyword>
       </keywords>
       <work-type>Contribution to a conference proceedings</work-type>
       <dates>
          <year>2018</year>
          <pub-dates>
             <date>2018-03</date>
          </pub-dates>
       </dates>
       <urls>
          <related-urls>
              <url>https://doi.org/10.18429/JACoW-IBIC2017-TUPCC13</url>
              <url>http://jacow.org/ibic2017/papers/tupcc13.pdf</url>
          </related-urls>
       </urls>
       <abstract>
          Bunch Shape Monitor was developed and tested in INR RAS for The Facility for Rare Isotope Beams to fulfil the requirements of a half a degree phase resolution for 80.5 MHz FRIB operating frequency. The configuration of the λ/4-type RF-deflector based on the parallel wire lines with the shorting jumper and capacitive plates was selected. Special dual correcting magnet is foreseen to compensate a possible influence of external magnetic fields. Peculiarities of the design and development process are described. Results of laboratory tests are presented.
       </abstract>
    </record>
  </records>
</xml>
