PDF-ELECTRON BEAM GUIDINBY EXTERNAL MAGNETICFIELDSIMPLOCDED FUEL PLASMA .
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Graduate School of Engineering Hiroshima University HigashiHiroshima JapanDepartment of Physics University of Nevada Reno ne of the most crucial issues of electrondriven
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ELECTRON BEAM GUIDINBY EXTERNAL MAGNETICFIELDSIMPLOCDED FUEL PLASMA .: Transcript
Graduate School of Engineering Hiroshima University HigashiHiroshima JapanDepartment of Physics University of Nevada Reno ne of the most crucial issues of electrondriven fast ignition is efficie. Edda . Gschwendtner, CERN. Outline. Motivation. AWAKE at CERN. AWAKE Experimental Layout: 1. st. Phase . AWAKE . Experimental Layout: . 2. nd. . Phase. Experimental Facility at CERN. Electron Source. O. . Tarvainen, T. Kalvas, H. Koivisto, J. . Komppula. , R. Kronholm, J. . Laulainen . University. . of . Jyväskylä. . I. . Izotov. , D. . Mansfeld. , V. . . Skalyga. . Institute . of. Applied . Erik Adli (University of Oslo). For the FACET E200 collaboration. CLIC Beam Dynamics meeting. CERN, Sep 5 2012. Introduction. 2. Beam-driven plasma-wake field acceleration. Principle of beam-driven plasma-. Electrons. Protons. X-rays. Claes-Göran. . Wahlström. Department of Physics, Lund University . and . Lund Laser Centre. Lund - . an old city with a large university. Lund - . A city with a strong accelerator future. Multi-objective Optimization of the . Matching Beamline for External Injection . into a Laser-driven Plasma Accelerator. .. . ID # 287. E. Panofski. #. , R. W. Assmann, DESY Hamburg, Germany. Motivation . Intra-beam . Scattering. Mauro Pivi, MedAustron - work made while at SLAC -. i. n . collaboration. with: T. . Demma. (Frascati & LAL), the ILC / CLIC and . University of Illinois Urbana-Champaign to Install First 150kV Electron Beam Lithography System in North America Rozario. , Rob . Shalloo. , John Wood. ATF User Meeting. 14-. 1. 1-. 201. 8. 1. Z. Najmudin. Scientific Case. 2. Cole, J. M. et al. Proc. Natl. Acad. Sci.. , . 2018/06/04/1802314115. Kneip. , S. . et al.. GeV electron beam in less than one meter of plasmaGeV energy gain of a positron beam in one metre of plasma and the laser-driven acceleration of electrons up to 8 GeV in only 20cm of plasma anks to it Andrzej G. . Chmielewski. Institute of Nuclear Chemistry and Technology. Warsaw, Poland. ARIES Meets Industry - accelerator application to the ship exhaust gases treatment. 1 Dec 2017,. TANGO 2. Flue gas electron beam irradiation. Edda Gschwendtner, CERN. w. ith input from A. Caldwell, P. . . Crivelli. , A. Pardons, A. Petrenko, S. . Gninenko. , . M. . Wing . 1. Outline. Introduction to AWAKE. Physics case for a fixed target experiment a la NA64 with AWAKE-like electron beam.. Seeding Next Generation Accelerator R&D. Proposal: . 304305. C. Swinson, M. . Babzien. , M. Palmer, I. . Pogorelsky. 2019 ATF Users Meeting: New Proposal. Funding: BNL LDRD - received. Outline. Long-term project motivation and goals. CEA/IRFU Team. Alban . Mosnier (WP2 Leader). Accelerator physicist, expertise in beam dynamics (and instabilities), Linacs (design, SRF), project coordination. Immersed in new acceleration techniques, especially LWFA since two years. PI: . Dr.. Ivan Konoplev. Co-I: Mr. Huibo Zhang. JAI, Department of Physics, . University of Oxford . Aim of the project . The . aims . of the research project . are. 1/ . to produce . fs-micro-bunch .
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