<?xml version="1.0" encoding="UTF-8"?>
<xml>
  <records>
    <record>
       <contributors>
          <authors>
             <author>Franqueira Ximenes, R.</author>
             <author>Aberle, O.</author>
             <author>Calviani, M.</author>
             <author>Esposito, R.</author>
             <author>Grenard, J.L.</author>
             <author>Griesemer, T.</author>
             <author>Romero Francia, A.R.</author>
             <author>Torregrosa, C.</author>
          </authors>
       </contributors>
       <titles>
          <title>
             Latest Advances in Targetry Systems at CERN and Exciting Avenues for Future Endeavours
          </title>
       </titles>
       <publisher>JACoW Publishing</publisher>
       <pub-location>Geneva, Switzerland</pub-location>
		 <isbn>2673-5571</isbn>
		 <isbn>978-3-95450-253-0</isbn>
		 <electronic-resource-num>10.18429/JACoW-HB2023-THBP48</electronic-resource-num>
		 <language>English</language>
		 <pages>599-602</pages>
       <keywords>
          <keyword>target</keyword>
          <keyword>proton</keyword>
          <keyword>antiproton</keyword>
          <keyword>neutron</keyword>
          <keyword>experiment</keyword>
       </keywords>
       <work-type>Contribution to a conference proceedings</work-type>
       <dates>
          <year>2024</year>
          <pub-dates>
             <date>2024-04</date>
          </pub-dates>
       </dates>
       <urls>
          <related-urls>
              <url>https://doi.org/10.18429/JACoW-HB2023-THBP48</url>
              <url>https://jacow.org/hb2023/papers/thbp48.pdf</url>
          </related-urls>
       </urls>
       <abstract>
          CERN’s accelerator complex offers diverse target systems for a range of scientific pursuits, including varying beam energies, intensities, pulse lengths, and objectives. Future high-intensity fixed target experiments aim to advance this field further. This contribution highlights upgraded operational target systems, enhancing CERN’s physics endeavours. One example is the third-generation n_TOF spallation neutron target, using a nitrogen-cooled pure lead system impacted by a 20 GeV/c proton beam. Another focuses on recent antiproton production target upgrades, with a high-intensity 26 GeV/c beam colliding with a narrow-air-cooled iridium target. Looking ahead, new high-power target systems are planned. One aims to discover hidden particles using a 350-kW high-Z production target, while another enhances kaon physics through a 100 kW low-Z target. This article provides an overview of current target systems at CERN, detailing beam-intercepting devices and engineering aspects. It also previews upcoming facilities that could soon be implemented at CERN.
       </abstract>
    </record>
  </records>
</xml>
