<xml>
  <records>
    <record>
       <contributors>
          <authors>
             <author>Gavrilov, S.A.</author>
             <author>Melnikov, A.A.</author>
             <author>Titov, A.I.</author>
          </authors>
       </contributors>
       <titles>
          <title>
             Beam Diagnostics and Instrumentation for Proton Irradiation Facility at INR RAS Linac
          </title>
       </titles>
		 <publisher>JACoW Publishing</publisher>
       <pub-location>Geneva, Switzerland</pub-location>
		 <isbn>978-3-95450-201-1</isbn>
		 <electronic-resource-num>10.18429/JACoW-IBIC2018-MOPA07</electronic-resource-num>
		 <language>English</language>
		 <pages>40-42</pages>
       <pages>MOPA07</pages>
       <keywords>
          <keyword>electron</keyword>
          <keyword>diagnostics</keyword>
          <keyword>radiation</keyword>
          <keyword>linac</keyword>
          <keyword>proton</keyword>
       </keywords>
       <work-type>Contribution to a conference proceedings</work-type>
       <dates>
          <year>2019</year>
          <pub-dates>
             <date>2019-01</date>
          </pub-dates>
       </dates>
       <urls>
          <related-urls>
              <url>https://doi.org/10.18429/JACoW-IBIC2018-MOPA07</url>
              <url>http://jacow.org/ibic2018/papers/mopa07.pdf</url>
          </related-urls>
       </urls>
       <abstract>
          The new proton irradiation facility to study radiation effects in electronics and other materials has been built in INR RAS linac. The range of the specified intensity from 10⁷ to 10¹² protons per beam pulse is covered with three beam diagnostic instruments: current transformer, phosphor screen and multianode gas counter. The peculiarities of the joint use of the three instruments are described. The experimental results of beam parameters observations and adjustments are presented.
       </abstract>
    </record>
  </records>
</xml>
