1The Inner Tracking System (ITS) Upgrade for the ALICE experiment at LHC is the first large-area (∼10 m2 ) silicon vertex detector based on the CMOS Monolithic Active Pixel Sensor (MAPS) technology, which combines sensitive volume and front-end readout logic in the same piece of silicon. This technology allows a reduced material budget (target value of 0.3% X0 on the innermost layers) thanks to the thin sensors (50-100 µm) and limited need of cooling, in combination with light-material interconnection circuits and support structures. The small pixel pitch (∼30 µm), the location of the layers (7 cylindrical layers with radii ranging from 2.3 cm to 39.3 cm from the beam interaction line), and the limited material budget will provide th...
The Inner Tracking System (ITS) of the ALICE experiment will be upgraded during the second long LHC ...
The upgrade of the Inner Tracking System (ITS), which is currently being developed by the ALICE Coll...
ALICE is the CERN LHC experiment optimised for the study of the strongly interacting matter produced...
installation of a novel Inner Tracking System (ITS). The upgraded detector will fully replace the cu...
ALICE detector was constructed to study the properties of hot and dense hadronic matter formed in re...
The ALICE Collaboration is preparing a major upgrade of the current detector, planned for installati...
As a major part of its upgrade plans, the ALICE experiment schedules the installation of a novel Inn...
Inner Tracking System (ITS) of ALICE is used for vertex determination and tracking. Future heavy-ion...
Inner Tracking System (ITS) of ALICE is used for vertex determination and tracking. Future heavy-ion...
The Monolithic Active Pixel Sensor (MAPS) technology is of central interest for the innermost tracki...
Monolithic Active Pixel Sensors (MAPS) offer the possibility to build pixel detectors and tracking l...
The ALICE Inner Tracking System (ITS) detector is undergoing a major upgrade in order to cope with t...
The ALICE (A Large Ion Collider Experiment) detector at the CERN LHC collider was designed to addres...
lation of a novel Inner Tracking System. It will replace the current six layer detector system with ...
The ALICE experiment will undergo a major upgrade during the second long shutdown of the CERN LHC. A...
The Inner Tracking System (ITS) of the ALICE experiment will be upgraded during the second long LHC ...
The upgrade of the Inner Tracking System (ITS), which is currently being developed by the ALICE Coll...
ALICE is the CERN LHC experiment optimised for the study of the strongly interacting matter produced...
installation of a novel Inner Tracking System (ITS). The upgraded detector will fully replace the cu...
ALICE detector was constructed to study the properties of hot and dense hadronic matter formed in re...
The ALICE Collaboration is preparing a major upgrade of the current detector, planned for installati...
As a major part of its upgrade plans, the ALICE experiment schedules the installation of a novel Inn...
Inner Tracking System (ITS) of ALICE is used for vertex determination and tracking. Future heavy-ion...
Inner Tracking System (ITS) of ALICE is used for vertex determination and tracking. Future heavy-ion...
The Monolithic Active Pixel Sensor (MAPS) technology is of central interest for the innermost tracki...
Monolithic Active Pixel Sensors (MAPS) offer the possibility to build pixel detectors and tracking l...
The ALICE Inner Tracking System (ITS) detector is undergoing a major upgrade in order to cope with t...
The ALICE (A Large Ion Collider Experiment) detector at the CERN LHC collider was designed to addres...
lation of a novel Inner Tracking System. It will replace the current six layer detector system with ...
The ALICE experiment will undergo a major upgrade during the second long shutdown of the CERN LHC. A...
The Inner Tracking System (ITS) of the ALICE experiment will be upgraded during the second long LHC ...
The upgrade of the Inner Tracking System (ITS), which is currently being developed by the ALICE Coll...
ALICE is the CERN LHC experiment optimised for the study of the strongly interacting matter produced...