Search Results - "Martinazzoli, Loris"

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  1. 1

    Crystal Fibers for the LHCb Calorimeter Upgrade by Martinazzoli, Loris

    Published in IEEE transactions on nuclear science (01-06-2020)
    “…The Large Hadron Collider beauty (LHCb) experiment is one of the four main particle detectors located at the Large Hadron Collider. After the high-luminosity…”
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    Journal Article
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    Scintillation properties and timing performance of state-of-the-art Gd3Al2Ga3O12 single crystals by Martinazzoli, Loris, Kratochwil, Nicolaus, Gundacker, Stefan, Auffray, Etiennette

    “…Future colliders will set stringent requirements on the performance of detector materials in terms of timing and radiation hardness. Scintillating garnet…”
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    Modeling Scintillation Kinetics and Coincidence Time Resolution in Heterostructured Scintillators by Pagano, Fiammetta, Kratochwil, Nicolaus, Martinazzoli, Loris, Lowis, Carsten, Paganoni, Marco, PIzzichemi, Marco, Auffray, Etiennette

    Published in IEEE transactions on nuclear science (01-12-2023)
    “…In the search for new materials and technologies to push the timing performances of time-of-flight positron emission tomography (TOF-PET) detectors, it is…”
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    Compositional engineering of multicomponent garnet scintillators: towards an ultra-accelerated scintillation response by Martinazzoli, Loris, Nargelas, Saulius, Bohá ek, Pavel, Calá, Roberto, Dušek, Michal, Rohlí ek, Jan, Tamulaitis, Gintautas, Auffray, Etiennette, Nikl, Martin

    Published in Materials advances (31-08-2022)
    “…Optical, luminescence and scintillation characteristics were studied in garnet-type GAGG single-crystal scintillators grown by the Czochralski method and…”
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    Enhancing Energy Resolution and Particle Identification via Chromatic Calorimetry: A Concept Validation Study by Arora, Devanshi, Salomoni, Matteo, Haddad, Yacine, Frank, Isabel, Martinazzoli, Loris, Pizzichemi, Marco, Doser, Michael, Owari, Masaki, Auffray, Etiennette

    Published 06-11-2024
    “…In particle physics, homogeneous calorimeters are used to measure the energy of particles as they interact with the detector material. Although not as precise…”
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