28 citations · 40 across the 7 of their papers we have counts for
8 papers
Summary of quality control (QC) of ATLAS18 production ITk strip sensors
P. Federičováa, A. Affolder, K. Affolder +38
To address the demanding operational requirements of the High-Luminosity upgrade of the Large Hadron Collider (HL-LHC), the ATLAS experiment is replacing its current Inner Detector…
Investigating the impact of the diode edge geometry on the effective active area of silicon sensors using AREA-X
Luise Poley, Ian Dyckes, Javier Fernandez-Tejero +3
Sensors for particle tracking detectors are required to provide a maximum active area in addition to fulfilling performance criteria concerning radiation hardness, charge collectio…
Evolution of the electrical characteristics of the ATLAS18 ITk strip sensors with HL-LHC radiation exposure range
J. Fernandez-Tejero, E. Bach, V. Cindro +13
The objective of the study is to evaluate the evolution of the performance of the new ATLAS Inner-Tracker (ITk) strip sensors as a function of radiation exposure, to ensure the pro…
Setups for eliminating static charge of the ATLAS18 strip sensors
P. Federicova, A. Affolder, G. A. Beck +27
Construction of the new all-silicon Inner Tracker (ITk), developed by the ATLAS collaboration for the High Luminosity LHC, started in 2020 and is expected to continue till 2028. Th…
A Starry Byte -- proton beam measurements of single event upsets and other radiation effects in ABCStar ASIC Versions 0 and 1 for the ITk strip tracker
M. J. Basso, J. Fernandez-Tejero, B. J. Gallop +13
Single Event Effects (SEEs) - predominately bit-flips in electronics caused by particle interactions - are a major concern for ASICs operated in high radiation environments such as…
Mapping the in-plane electric field inside irradiated diodes
L. Poley, A. J. Blue, C. Buttar +12
A significant aspect of the Phase-II Upgrade of the ATLAS detector is the replacement of the current Inner Detector with the ATLAS Inner Tracker (ITk). The ATLAS ITk is an all-sili…