Category: Organization

  • CLIC parameters and design

    CLIC parameters and design The CLIC beam physics team is active at many different levels within the CLIC Study: parameters definition, lattice design, performance optimization, assessment of imperfections and mitigation strategies, failure-modes, are some of the studies provided by the CLIC beam physics team. These studies are performed in close synergy with the technical teams

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  • CLIC linac systems

    CLIC linac systems

    CLIC linac systems The CLIC linac systems activity comprises work on the main linac two beam module, the drive beam injector including the drive beam rf power source and main beam injector studies. Our team build several prototype two beam modules which are tested with and without beam. The focus is on the thermo-mechanical behaviour

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  • CLIC technical developments

    CLIC technical developments

    CLIC technical developments Technical systems developments covering amongst others alignment/stabilization of quadrupoles, warm-, superconducting- and pulsed magnets. Indico page List of work packages CLIC-TD

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  • CLIC X-band technologies

    CLIC X-band technologies

    CLIC X-band technologies The objective of the X-band activity is to develop the high-gradient, high-power X-band rf system for the CLIC main linacs. The current focus is on constructing and operating 100 MV/m prototype accelerating structures and establishing a significant high-power testing capability through klystron-based test stands. Additional activities include studies of the fundamental physics

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  • CLIC implementation studies

    CLIC implementation studies

    CLIC implementation studies Implementation studies for the CLIC project are organized around two poles: 1. Civil engineering and infrastructure 2. Project Implementation Plan Indico page List of work packages CLIC-IS

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  • CLIC experimental verification

    CLIC experimental verification The objective of the Experimental Verification activity is to conduct system tests at CERN and elsewhere – in most cases with beams – in order to validate the CLIC scheme and provide feedback to design and hardware development studies. The main activity is centered on the CLIC Test Facility CTF3, built at

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  • CTF3 general description

    CTF3 general description The CLIC Test Facility 3 (CTF3) is primarily a scaled version of the CLIC drive beam complex. It produces the high-current drive beam that generates the 12 GHz RF power for the CLIC accelerating structures. CTF3 first accelerates a 4 A beam up to 120 MeV, in a fully loaded linac with

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  • CTF3

    CTF3

    CTF3 stopped its operation at the end of 2016 after successfully completing its programme. Analysis of data and results are still on-going and will be an integral part of the CLIC project plan by the end of 2018. Some future measurements for CLIC will take place using the new user facility CLEAR.

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  • CLIC organogram

    CLIC organogram

    CLIC organogram

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  • CLIC accelerator activities

    CLIC accelerator activities Main activities and goals for 2018: CLIC Parameters and design CLIC Linac systems CLIC Technical developments CLIC X-band technologies Other activities before 2017: CLIC Experimental verification CLIC Implementation studies

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