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TY - CONF AU - Shea, T.J. AU - Baron, R.A. AU - Bustinduy, I. AU - Derrez, C.S. AU - Donegani, E.M. AU - Ferianis, M. AU - Grishin, V. AU - Hassanzadegan, H. AU - Kittelmann, I. AU - Kocevar, H. AU - Milas, N. AU - Noll, D. AU - Papaevangelou, T. AU - Seguí, L. AU - Silva, H.A. AU - Tarkeshian, R. AU - Thomas, C.A. ED - Forck, Peter ED - Wawrzyniak, Adriana ED - Schaa, Volker R.W. ED - Kowalski, Grzegorz W. ED - Cudek, Agnieszka (SOLARIS, Kraków TI - Beam Instrumentation Performance During Commissioning of the ESS RFQ, MEBT and DTL J2 - Proc. of IBIC2022, Kraków, Poland, 11-15 September 2022 CY - Kraków, Poland T2 - International Beam Instrumentation Conference T3 - 11 LA - english AB - In late 2021 through mid 2022, the first protons were accelerated and transported through the European Spallation Source (ESS) Radio Frequency Quadrupole and Medium Energy Transport line at 3.6 MeV, and finally through the first Drift Tube Linac tank at 21 MeV. To enable these achievements, the following beam instrumentation systems were deployed: Ion Source power supply monitors, beam chopping systems, Faraday Cups, Beam Current Monitors (BCM) and Beam Position Monitors (BPM) that also measured phase. Additional systems were deployed for dedicated studies, including Wire Scanners, a slit and grid Emittance Measurement Unit, neutron Beam Loss Monitors and fast BCM and BPM systems. The instrumentation deployment is the culmination of efforts by a partnership of the ESS beam diagnostics section, multiple ESS groups and institutes across the globe. This paper summarizes the beam tests that characterized the performance of the instrumentation systems and verified the achievement of commissioning goals. PB - JACoW Publishing CP - Geneva, Switzerland SP - 32 EP - 36 KW - DTL KW - MMI KW - MEBT KW - linac KW - proton DA - 2022/12 PY - 2022 SN - 2673-5350 SN - 978-3-95450-241-7 DO - doi:10.18429/JACoW-IBIC2022-MOP07 UR - https://jacow.org/ibic2022/papers/mop07.pdf ER -