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MOPPR045

BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM. BLM.

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MOPPR045

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  1. BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM BLM CM CM CM CM CM CM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM BPM CM CM CM CM CM CM FC FC CM FC BLM BLM NEG NEG NEG NEG BLM BLM BLM F F MOPPR045 EP BEAM DIAGNOSTICS FOR ESS WS WS WS WS WS WS WS WS WS WS WS WS WS WS WS 16 NIP NIP NIP NIP NIP NIP NIP NIP NIP NIP NIP NIP NIP NIP NIP NIP NIP NIP NIP NIP NIP NIP BSM BSM BSM BSM BSM BSM BSM BSM BSM BSM BSM BSM BSM Jansson, C. Böhme, B. Cheymol, H. Hassanzadegan, T. Shea, L. Tchelidze, European Spallation Source ESS AB, Lund, Sweden Collimator Target WS WS WS WS Current Baseline Layout WS WS WS WS WS LEBT MEBT Abstract The European Spallation Source (ESS), to be built in the south of Sweden, will use a 2.5 GeV superconducting linac to produce the world’s most powerful neutron source. The project is currently in a pre-construction phase, during which the linac design is being updated. This paper describes the current plans for beam diagnostics in terms of requirements, number and locations of different systems, and possible technical solutions. RFQ SOURCE SEM SEM SEM SEM FC FC DTL Tank 3 Tank 2 Tank 4 Tank 1 WS WS FC WS WS 0 Spoke Section Cold Linac Diagnostics Current Monitor Loss Monitor Faraday Cup Slit SEM Grid Wire Scanner Non-invasive Profile Device Bunch Shape Monitor Imaging Device Medium Beta Elliptical Section Warm Section Layout (Aarhus University) Buncher Cavity Chopper Collimator Quadrupole Dipole Solenoid Gate Valve Fast Valve “Beam Box” High Beta Elliptical Section BPM Prototype Drawing Spoke Cryomodule Medium Beta Elliptical Cryomodule High Beta Elliptical Cryomodule Conceptual Layout – Diagnostics Section with Luminescence Monitor HEBT (to switch) From ighBeta To Switch Dipoles Conceptual Layout – Diagnostics Section with Ionization Profile Monitor Transfer line to Target Transfer line to Dump

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