Large-area linear silicon drift detectors will equip the third and fourth layers of the inner tracking system of the ALICE experiment. During the R&D phase of this sensor, an extensive work of simulation has been carried out in order, first, to determine, and, subsequently, to refine its design. In this paper we present this work giving a detailed description of the characteristics of each building block. (c) 2006 Elsevier Ltd. All rights reserved
Abstract We report preliminary beam test results of linear Silicon Draft Detector prototypes for t...
The design and 2D simulation results of a Silicon Drift Chamber with a rectangular configuration are...
. Large area, 7.25 cm x 8.76 cm, silicon drift detectors have been developed and are in production f...
Large-area linear silicon drift detectors will equip the third and fourth layers of the inner tracki...
Large-area linear silicon drift detectors will equip the third and fourth layers of the inner tracki...
Two hundred and sixty Silicon Drift Detectors (SDDs), each with an active area of 7.0 x 7.5 cm(2), w...
The ALICE experiment studies the properties of quark‐gluon plasma and requires a good tracking syste...
The project of the two Silicon Drift Detector (SDD) layers of the ALICE Inner Tracking System is rev...
The introductory part of this bachelor’s degree work discusses semiconductor detectors (almost exclu...
A Silicon Drift Detector (SDD) with an active area of 7:0 7:5 cm2 has been designed, produced and t...
We report the results of the first beam test of one of the very large area silicon drift detector pr...
Silicon drift detectors with an active area of 7.0 x 7.5 cm(2) will equip the two middle layers of t...
Silicon Drift Detectors (SDDs) have been selected to equip the two intermediate layers of the Inner ...
Silicon drift detectors with an active area of 7.0x7.5 cm2 will equip the two middle layers ofthe In...
We report the results of the first beam test of one of the very large area silicon drift detector pr...
Abstract We report preliminary beam test results of linear Silicon Draft Detector prototypes for t...
The design and 2D simulation results of a Silicon Drift Chamber with a rectangular configuration are...
. Large area, 7.25 cm x 8.76 cm, silicon drift detectors have been developed and are in production f...
Large-area linear silicon drift detectors will equip the third and fourth layers of the inner tracki...
Large-area linear silicon drift detectors will equip the third and fourth layers of the inner tracki...
Two hundred and sixty Silicon Drift Detectors (SDDs), each with an active area of 7.0 x 7.5 cm(2), w...
The ALICE experiment studies the properties of quark‐gluon plasma and requires a good tracking syste...
The project of the two Silicon Drift Detector (SDD) layers of the ALICE Inner Tracking System is rev...
The introductory part of this bachelor’s degree work discusses semiconductor detectors (almost exclu...
A Silicon Drift Detector (SDD) with an active area of 7:0 7:5 cm2 has been designed, produced and t...
We report the results of the first beam test of one of the very large area silicon drift detector pr...
Silicon drift detectors with an active area of 7.0 x 7.5 cm(2) will equip the two middle layers of t...
Silicon Drift Detectors (SDDs) have been selected to equip the two intermediate layers of the Inner ...
Silicon drift detectors with an active area of 7.0x7.5 cm2 will equip the two middle layers ofthe In...
We report the results of the first beam test of one of the very large area silicon drift detector pr...
Abstract We report preliminary beam test results of linear Silicon Draft Detector prototypes for t...
The design and 2D simulation results of a Silicon Drift Chamber with a rectangular configuration are...
. Large area, 7.25 cm x 8.76 cm, silicon drift detectors have been developed and are in production f...