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Burkhard Schmidt (CERN)06/12/2023, 14:00
- The context: ECFA Detector Roadmap
- Outcome of the Survey for an R&D collaboration
- Relations to other DRD collaborations
- Goals of the Community Meeting
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Jerome Baudot (IPHC - Strasbourg)06/12/2023, 14:20
Various scientific and technical groups from IPHC have a strong interest in developing very light detection structures. The targeted material budget would be around 0.1%X0 for vertex detector layers and below 1%X0 for tracker layers.
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Past achievements from IPHC include the development and production of detection modules with silicon strip sensors or monolithic sensors. In particular, within... -
Paul Neil Kemp-Russell (University of Sheffield (GB))06/12/2023, 14:40
Abstract for DRD8 or FTDM meeting
Over the past decade or so the University of Sheffield has been heavily involved with several of the topics to be discussed at this meeting. I would like this opportunity to give a brief overview of our past and current work and our goals for future projects.
Our involvement in the ATLAS tracker upgrade has led us to be at the forefront of orbital...
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Dr Cristiano Turrioni (INFN, Perugia (IT))06/12/2023, 15:00
A working group based in Perugia (Italy) has been involved since many years in the international collaboration of the CMS experiment, historically participating in activities related to the physics and the detector construction, from the first CMS phase-0 collaboration to the current R&D for the phase-2 upgrade. Starting from 2017, the group has expanded to also embrace the topics of the...
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Oscar Augusto De Aguiar Francisco (University of Manchester (GB))06/12/2023, 15:20
Mechanical supports and cooling structures will be needed by future large-scale CMOS trackers. Our (University of Manchester) current R&D is focussed on the needs of the LHCb Upgrade II tracking system to be deployed in the early 2030s. We would be keen to participate to generic R&D as common solutions that can be applied to multiple projects would be useful. Small scale prototypes have been...
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Maksym Teklishyn06/12/2023, 15:40
The Silicon Tracking System is a core tracking detector for the heavy ion CBM experiment at the future FAIR facility in Darmstadt. The STS is designed to handle the unprecedented heavy ion beam-target interaction up to 10 MHz, resulting in >700 charged particle tracks in a sensitive volume. It features eight tracking stations in the aperture of the 1Tm superconducting dipole, covering a solid...
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Stefano Gramigna (Universita e INFN, Ferrara (IT))06/12/2023, 16:00
The BESIII group in Ferrara is one of the main contributors in the realization of the new Cylindrical GEM Inner Tracker for the BESIII experiment. The construction of such a large cylindrical detector, replete with floating electrodes, poses numerous challenges necessitating the development of sophisticated mechanical solutions leveraging top-tier materials and cutting-edge...
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Laura Rhian Pickard (University of Bristol)06/12/2023, 16:40
Following the successful workshop "Composites For High Energy Physics" held at Bristol Composites Institute and the UK National Composites Centre, with participants from CERN, I will deliver an overview of capabilities at BCI and NCC that are relevant to this community and the many potential topics for collaboration discussed at this meeting. The areas of focus are cryogenics and materials...
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Andreas Mussgiller (Deutsches Elektronen-Synchrotron (DE)), Moritz Guthoff (Deutsches Elektronen-Synchrotron (DE))06/12/2023, 17:00
The particle physics division of DESY is engaged in several on-site and off-site experiments, with a group structure according to experiment affiliation. A horizontal detector R&D platform is nurturing exchange across groups and experiments. The main detector R&D aspects are monolithic silicon detectors, highly granular SiPM on tile calorimeter, cryogenic detectors, as well as detector...
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Sushrut Rajendra Karmarkar (Purdue University (US))06/12/2023, 17:20
Future colliders, such as the Future Circular Collider (FCC-hh/ee) or the muon collider will collide particles at unprecedented collision rates and energies resulting in harsh conditions for support structures and services. Waste heat on the order of 10-100’s of kW is generated in future innermost tracking detectors, namely silicon detectors, and has to be efficiently removed through support...
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Corrado Gargiulo (CERN)06/12/2023, 17:40
The EP R&D programme at CERN aims at the development of new technologies for future Detectors for High Energy Physics experiments.
The unprecedented requirements for minimum material budget, mechanical stability, higher radiation environment, and lower operational temperature necessitate the development of new design solutions for future HEP experiments.
The Work package on Mechanics...
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Paolo Petagna (CERN)06/12/2023, 18:00
In the coming years the R&D activity on thermal management of silicon detector electronics at CERN will follow the lines presently engaged in the frame of the CERN-funded EP-RDET programme (WP4) and of the EC-funded projects AIDAinnova (WP10) and ATTRACT (AHEAD project).
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This will articulate along two main subjects:
1) The introduction of Additive Manufacturing (3D printing) in metal and... -
06/12/2023, 18:20
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