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Issue title: ICANS-XXIII, hosted by the Oak Ridge National Laboratory Neutron Sciences Directorate
Guest editors: Kenneth W. Herwig and Erik B. Iverson
Article type: Research Article
Authors: Reggiani, Davide; * | Blau, Bertrand | Dölling, Rudolf | Duperrex, Pierre Andre | Kiselev, Daniela | Talanov, Vadim | Welte, Jörg | Wohlmuther, Michael
Affiliations: Paul Scherrer Institut, CH-5412 Villigen-PSI, Switzerland. E-mail: davide.reggiani@psi.ch
Correspondence: [*] Corresponding author. E-mail: davide.reggiani@psi.ch.
Abstract: With a nominal beam power of nearly 1.4 MW, the PSI High Intensity Proton Accelerator (HIPA) is currently at the forefront of the high intensity frontier of particle accelerators. Key issues of this facility are minimization of beam losses as well as safe operation of the SINQ spallation source. Particular attention is being recently paid towards an improved understanding of the properties of the SINQ beam line by both enhancing the beam transport simulations and developing new diagnostic elements which can also, in some cases, preserve the target integrity by preventing too large beam current density, inaccurate beam steering or improper beam delivery. Moreover, part of the SINQ beam diagnostic concept is being rethought in order to include important missing devices like BPMs. On the simulation side, newly developed composite calculations involving general purpose particle transport programs like MCNPX and BDSIM will deliver insights about beam losses and transmission through collimators. All recent and planned developments of the SINQ beam line will be discussed in this contribution.
Keywords: Proton accelerator, beam losses, diagnostics, simulations
DOI: 10.3233/JNR-200162
Journal: Journal of Neutron Research, vol. 22, no. 2-3, pp. 325-335, 2020
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