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Our team specializes in various aspects of solid state detectors, including wire bonding, die attach, thin film technologies, photodetectors, and radiation hardness studies. We have extensive experience in radiation experiments and dosimetry, and have established links with other groups in the field. Let's work together to develop efficient monitoring devices for radiation levels in LHC experiments.
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TA1 – SD has the mandate to provide support and perform developments in • the field of Solid state Detectors • This comprises • wire bonding and die attach • thin film technologies (mirrors, optical filters, …) • photodetectors (CsI, HPDs) • silicon detectors, focused on radiation hardness issues (RD50) • irradiations www.cern.ch/ssd
During the last ~10 years, the irradiation team (Maurice Glaser, Michael Moll, Federico Ravotti) has performed radiation experimentsinvolving several thousand samples, incl. preparation, under bias, with readout, dosimetry, storage, packaging, cold shipping… Our section is involved in radiation hardness studies (RD48, RD50) with the aim to develop ultra rad hard tracking detectors. • There is a significant amount of theoretical knowledge and practical experience in radiation related effects and dosimetry. • There exist well established links to other groups in the domain, irradiation facilities and the SC/RP people at CERN.
Each LHC experiment wishes to monitor its radiation levels! • (Active) dosimeters can be very useful devices in the very early phase of an experiment (dirty beam conditions, not all detectors fully commissioned or understood). • Parallel developments / calibration / construction / maintenance of relatively simple devices like dosimeters would not be economic and efficient. • Let’s do it together ! • Let’s have good links to other groups working on similar problems like Beam Condition Monitor, RAMSES, LHC rad. monitoring etc.