Tag: Detector Technologies

  • Zooming in the EP R&D Days 2022

    Zooming in the EP R&D Days 2022

    Zooming in the EP R&D Days 2022 The annual EP R&D Days meeting was held on the 20th and 21st of June 2022. The meeting reviewed progress and plans of the 11 work packages as the EP RnD programme reaches its midpoint. In addition, the meeting offered better understanding of the respective needs and potential

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  • Findings of the ECFA Roadmap for R&D on Detector Technologies

    Findings of the ECFA Roadmap for R&D on Detector Technologies

    Findings of the ECFA Roadmap for R&D on Detector Technologies In two previous newsletter editions (1, 2) the process to develop a Roadmap for R&D on Detector Technologies was reported. As recommended in the European Strategy for Particle Physics Update (EPPSU) (3), ECFA has set up the Detector R&D Panel which has led this process.

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  • Update on the ECFA Roadmap for R&D on Detector Technologies

    Update on the ECFA Roadmap for R&D on Detector Technologies

    Update on the ECFA Roadmap for R&D on Detector Technologies It was reported in the previous edition of the EP Newsletter (1) that the European Strategy for Particle Physics Update (EPPSU (2) recommended that “Organised by ECFA, a roadmap should be developed by the community to balance the detector R&D efforts in Europe, taking into

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  • Setting a roadmap for R&D on Detector Technologies

    Setting a roadmap for R&D on Detector Technologies

    Setting a roadmap for R&D on Detector Technologies Research is a global game, yet to be successful requires coordination at regional, national and international level. The success of the LHC programme highlights the role of open-door policies and diverse bottom-up community initiatives in technological R&D for the efficient construction and operation of the accelerator and

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  • Proto-DUNE at CERN: New technologies for new discoveries

    Proto-DUNE at CERN: New technologies for new discoveries

    Proto-DUNE at CERN: New technologies for new discoveries Following many years of R&D work, recent results from ProtoDUNE-SP, the single-phase DUNE Far Detector prototype at the CERN Neutrino Platform, now validate the Liquid Argon Time Projection Chamber (LArTPC) technology choice for DUNE providing the necessary information for the DUNE Technical Design Report (TDR) [https://arxiv.org/abs/2002.03010] recently

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  • Using 3D printing techniques for future neutrino detectors

    Using 3D printing techniques for future neutrino detectors

    Using 3D printing techniques for future neutrino detectors Plastic scintillator is one of the most used active materials in high-energy physics. A charged particle crossing a plastic scintillator loses part of its initial energy and produces a quantity of scintillation light that depends on its energy and type. This property allows using this technology for

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  • The ALICE ITS upgrade: Pixels for quarks

    The ALICE ITS upgrade: Pixels for quarks

    The ALICE ITS upgrade: Pixels for quarks Introduction ALICE, the heavy-ion dedicated experiment at the LHC, will soon have enhanced physics capabilities with a major upgrade of the detectors, data-taking and data-processing systems which will improve the precision of the extracted characteristics of the high density, high temperature phase of strongly interacting matter, the quark-gluon

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  • DT group: A year in review

    DT group: A year in review

    DT group: A year in review In the beginning of June, the EP-DT group has published its Annual Report summarizing its yearly activities and offering an overview of major achievements and future collaborative plans. The Detector Technologies (DT) group comprises expertise in many key domains for advanced detector systems and engages in several detector projects

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  • Physics from neutrino near detectors: opening a new window for BSM searches

    Physics from neutrino near detectors: opening a new window for BSM searches

    Physics from neutrino near detectors: opening a new window for BSM searches With the advent of a new generation of neutrino experiments which leverage high-intensity neutrino beams for precision measurements, it is timely to explore the opportunity that these experiments offer for searches of beyond the standard model (BSM) physics. The realm of BSM physics

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