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Testbeam and laboratory test results of irradiated 3D CMS pixel detectors

Abstract:
The CMS silicon pixel detector is the tracking device closest to the LHC p-p collisions, which precisely reconstructs the charged particle trajectories. The planar technology used in the current innermost layer of the pixel detector will reach the design limit for radiation hardness at the end of Phase I upgrade and will need to be replaced before the Phase II upgrade in 2020. Due to its unprecedented performance in harsh radiation environments, 3D silicon technology is under consideration as a possible replacement of planar technology for the High Luminosity-LHC or HL-LHC. 3D silicon detectors are fabricated by the Deep Reactive-Ion-Etching (DRIE) technique which allows p-and n-type electrodes to be processed through the silicon substrate as opposed to being implanted through the silicon surface. The 3D CMS pixel devices presented in this paper were processed at FBK. They were bump bonded to the current CMS pixel readout chip, tested in the laboratory, and testbeams carried out at FNAL with the proton beam of 120 GeV/c. In this paper we present the laboratory and beam test results for the irradiated 3D CMS pixel devices. © 2013 CERN.

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Publisher copy:
10.1016/j.nima.2013.07.042

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Journal:
Nuclear Instruments and Methods in Physics Research, Section A: Accelerators, Spectrometers, Detectors and Associated Equipment More from this journal
Volume:
732
Pages:
52-56
Publication date:
2013-01-01
DOI:
ISSN:
0168-9002


Language:
English
Keywords:
Pubs id:
pubs:442992
UUID:
uuid:4d88a53f-a6b6-48d4-8b58-4e79490ab250
Local pid:
pubs:442992
Source identifiers:
442992
Deposit date:
2014-02-16

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