Tag: FCC

  • Physics at 100 TeV

    Physics at 100 TeV

    Physics at 100 TeV A report discussing the opportunities for physics discoveries with a future 100 TeV hadron circular collider was presented earlier this summer during the 2016 FCC Week. A future hadron-hadron collider machine will be able to cover previously unexplored territory at energies never before reached in a laboratory environment. Standard Model calculations

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  • Design of Twin Solenoid & Dipoles Detector Magnet System for the Future Circular Collider

    Design of Twin Solenoid & Dipoles Detector Magnet System for the Future Circular Collider

    Design of Twin Solenoid & Dipoles Detector Magnet System for the Future Circular Collider The Future Circular Collider study for hadron-hadron collisions/collider (FCC-hh) foresees a collision energy of 100 TeV, which is about 7 times higher than the LHC. For the detectors this means that in order to determine the properties of the particles the

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  • FCC-hh baseline layout and parameter set

    FCC-hh baseline layout and parameter set

    FCC-hh baseline layout and parameter set The core of the Future Circular Collider (FCC) project is a hadron collider called “FCC-hh” which aims at colliding proton beams with a centre of mass energy of 100 TeV – more than seven times the energy that can be reached in the LHC. BROKEN IMAGE NOT MOVED (drupal

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  • Discussing the FCC plans with Michelangelo Mangano

    Discussing the FCC plans with Michelangelo Mangano

    Discussing the FCC plans with Michelangelo Mangano The FCC Kick-off meeting took place in Geneva earlier in February as a response to one of the directions emphasized by the European Strategy for Particle Physics. But is it the right time to start exploring this direction? Michelangelo Mangano says: “The LHC will saturate its exploration potential

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