18–22 Feb 2019
Vienna University of Technology
Europe/Vienna timezone

Session

Plenary 5

22 Feb 2019, 14:00
EI7

EI7

Conveners

Plenary 5

  • Manfred Krammer (CERN)

Plenary 5

  • Manfred Krammer (CERN)

Presentation materials

There are no materials yet.

  1. Christos Touramanis (University of Liverpool (GB))
    22/02/2019, 14:00
    Invited Talk

    With three-neutrino-families mixing firmly established in recent years, and the relatively large value of theta_13 observed, the race is on to discover CP Violation in neutrino mixing in accelerator-driven long baseline neutrino oscillation experiments. NOvA and T2K will continue to provide increasingly precise measurements of the PMNS mixing matrix parameters into the next decade. DUNE will...

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  2. Roman Poeschl (Laboratoire de l'Accelerateur Lineaire (FR))
    22/02/2019, 14:50
    Calorimeters
    Talk

    The CALICE Collaboration has been conducting R&D for highly granular calorimeters since more than 15 years with an emphasis on detectors for Linear Colliders. This contribution will describe the commissioning, including beam tests, of large scale technological prototypes of a silicon tungsten electromagnetic calorimeter and hadron calorimeters featuring either a gaseous medium or scintillator...

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  3. Dr Alexey Lyashenko (Incom Inc.)
    22/02/2019, 15:15
    Talk

    The Large Area Picosecond Photo-Detector (LAPPD™) is a microchannel plate (MCP) based planar geometry photodetector featuring single-photon sensitivity, semitransparent bi-alkali photocathode, millimeter spatial and picosecond temporal resolutions and an active area of to 350 square centimeters. The “baseline” LAPPD™ employs a borosilicate float glass hermetic package. Photoelectrons are...

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  4. Erik Fröjdh (Paul Scherrer Institut)
    22/02/2019, 16:20
    Talk

    The hybrid pixel detector EIGER, featuring 75$\times$75 $\mu$m$^2$ pixel size, is a photon counter designed for use at synchrotrons. The chip and the complete readout system were designed at the Paul Scherrer Institut, Switzerland. A single chip consists of 256$\times$256 pixels and can acquire data at 22000~frame/s with 4-bit counter depth. In a full module, 4$\times$2 chips are bonded to a...

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