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Feasibility of GAPDs in standard CMOS for tracker detectors
Details
This book presents the development of a GAPD (Geiger-mode Avalanche PhotoDiode) pixel detector aimed mostly at particle tracking at future linear colliders. GAPDs offer outstanding qualities to meet the challenging requirements of ILC (International Linear Collider) and CLIC (Compact LInear Collider), such as an extraordinary high sensitivity, virtually infinite gain and ultra-fast response time, apart from compatibility with standard CMOS technologies. In particular, GAPD detectors can be read out after each single bunch crossing, a unique quality that none of its competitors can offer at the moment. In spite of all these advantages, GAPD detectors suffer from two main problems. On the one side, there exist noise phenomena inherent to the sensor, which induce noise pulses that cannot be distinguished from real particle events and also worsen the detector occupancy to unacceptable levels. On the other side, the fill-factor is too low and gives rise to a reduced detection efficiency. Solutions to the two problems commented that are compliant with the severe specifications of the next generation of particle colliders have been thoroughly investigated.
Autorentext
She received the Ph.D. degree in engineering and advanced technologies from the University of Barcelona (UB), Spain, in 2013 for her work in the development of GAPDs monolithically integrated in standard CMOS technologies. Her research is focused on novel semiconductor radiation detectors aimed at particle trackers and imaging applications.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09783639714906
- Genre Elektrotechnik
- Sprache Englisch
- Anzahl Seiten 260
- Größe H220mm x B150mm x T16mm
- Jahr 2014
- EAN 9783639714906
- Format Kartonierter Einband (Kt)
- ISBN 3639714903
- Veröffentlichung 30.04.2014
- Titel Feasibility of GAPDs in standard CMOS for tracker detectors
- Autor Eva Vilella Figueras , Angel Diéguez Barrientos
- Untertitel Development of a pixel detector prototype
- Gewicht 405g
- Herausgeber Scholars' Press