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The CLIC project
/ Brunner, O. (CERN) ; Burrows, P.N. (JAI, UK) ; Calatroni, S. (CERN) ; Lasheras, N. Catalan (CERN) ; Corsini, R. (CERN) ; D'Auria, G. (Sincrotrone Trieste) ; Doebert, S. (CERN) ; Faus-Golfe, A. (IJCLab, Orsay) ; Grudiev, A. (CERN) ; Latina, A. (CERN) et al.
The Compact Linear Collider (CLIC) is a multi-TeV high-luminosity linear e$^+$e$^-$-collider under development by the CLIC accelerator collaboration, hosted by CERN. [...]
arXiv:2203.09186 ; CERN-ACC-2022-005 ; CLIC-Note-1174.
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The Compact Linear e$^+$e$^-$ Collider (CLIC): Accelerator and Detector
/ Robson, Aidan (University of Glasgow (GB)) ; Burrows, Philip N (University of Oxford) ; Catalan Lasheras, Nuria (CERN) ; Linssen, Lucie (CERN) ; Petric, Marko (CERN) ; Schulte, Daniel (CERN) ; Sicking, Eva (CERN) ; Stapnes, Steinar (CERN) ; Wuensch, Walter (CERN)
The Compact Linear Collider (CLIC) is a TeV-scale high-luminosity linear e$^+$e$^-$ collider under development by international collaborations hosted by CERN. This document provides an overview of the design, technology, and implementation aspects of the CLIC accelerator and the detector. [...]
CLICdp-Note-2018-009.-
Geneva : CERN, 2018 - 20.
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Comparison of bulk and interfacial diffusion of $^{8}Li^{+}$ in solid-state battery materials with ${\beta}$-NMR spectroscopy
/ Rees, Gregory (Department of Materials, University of Oxford, Oxford, UK; The Faraday Institution, Didcot, UK) ; Payne, Batholomew (Department of Materials, University of Oxford, Oxford, UK;The Faraday Institution, Didcot, UK) ; Sparks, Amy (Experimental Physics Department, CERN, Geneva, Switzerland) ; Azaryan, Nikolay (Experimental Physics Department, CERN, Geneva, Switzerland; Department of Particle and Nuclear Physics, University of Geneva, Geneva, Switzerland) ; Baranowski, Mikolaj (Department of Particle and Nuclear Physics, University of Geneva, Geneva, Switzerland) ; Bissell, Mark (Experimental Physics Department, CERN, Geneva, Switzerland) ; Bruce, Peter (Department of Materials, University of Oxford, Oxford, UK; The Faraday Institution, Didcot, UK) ; Chojnacki, Mateusz (Experimental Physics Department, CERN, Geneva, Switzerland; Department of Particle and Nuclear Physics, University of Geneva, Geneva, Switzerland) ; Mauro, Pasta (Department of Materials, University of Oxford, Oxford, UK; The Faraday Institution, Didcot, UK) ; Pesek, Michael (Experimental Physics Department, CERN, Geneva, Switzerland) et al.
CERN-INTC-2024-056 ; INTC-P-713.
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The AWAKE Run 2 programme and beyond
/ AWAKE Collaboration
Plasma wakefield acceleration is a promising technology to reduce the size of particle accelerators. Use of high energy protons to drive wakefields in plasma has been demonstrated during Run 1 of the AWAKE programme at CERN. [...]
arXiv:2206.06040.-
2022-08-12 - 21 p.
- Published in : Symmetry 14 (2022) 1680
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