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1.
Optimization of the silicon sensors for the CMS tracker / Albergo, S ; Angarano, M M ; Azzi, P ; Babucci, E ; Bacchetta, N ; Bader, A J ; Bagliesi, G ; Basti, A ; Biggeri, U ; Biino, C et al.
The CMS experiment at the LHC will comprise a large silicon strip tracker. This article highlights some of the results obtained in the R&D; studies for the optimization of its silicon sensors. [...]
2001 - Published in : Nucl. Instrum. Methods Phys. Res., A 466 (2001) 300-7
2.
New results on silicon microstrip detectors of CMS tracker / Demaria, N ; Albergo, S ; Angarano, M M ; Azzi, P ; Babucci, E ; Bacchetta, N ; Bader, A J ; Bagliesi, G ; Basti, A ; Biggeri, U et al.
Interstrip and backplane capacitances on silicon microstrip detectors with pf strip on n substrate of 320 mu m thickness were measured for pitches between 60 and 240 mu m and width over pitch ratios between 0.13 and 0.5. Parametrisations of capacitance w.r.t. [...]
Geneva : CERN, 2000 - Published in : Nucl. Instrum. Methods Phys. Res., A 447 (2000) 142-50
3.
Comparative study of <111> and <100> crystals and capacitance measurements on Si strip detectors in CMS / Albergo, S ; Angarano, M M ; Azzi, P ; Babucci, E ; Bacchetta, N ; Bader, A J ; Bagliesi, G ; Basti, A ; Biggeri, U ; Bilei, G M et al.
For the construction of the silicon microstrip detectors for the tracker of the CMS experiment, two different substrate choices were investigated: A high-resistivity (6 k Omega cm) substrate with <111> crystal orientation and a low-resistivity (2 k Omega cm) one with <100> crystal orientation. The interstrip and backplane capacitances were measured before and after the exposure to radiation in a range of strip pitches from 60 mu m to 240 mu m and for values of the width-over-pitch ratio between 0.1 and 0.5. [...]
1999 - Published in : Nuovo Cimento A 112 (1999) 1261-9
4.
The CMS Silicon Strip Tracker / Focardi, E ; Albergo, S ; Angarano, M M ; Azzi, P ; Babucci, E ; Bacchetta, N ; Bader, A J ; Bagliesi, G ; Bartalini, P ; Basti, A et al.
Geneva : CERN, 1999 - Published in : Nucl. Instrum. Methods Phys. Res., A 435 (1999) 102-108
5.
The CMS silicon tracker / D'Alessandro, R ; Albergo, S ; Angarano, M M ; Azzi, P ; Babucci, E ; Bacchetta, N ; Bagliesi, G ; Bartalini, P ; Basti, A ; Biggeri, U et al.
1998 - Published in : Nucl. Instrum. Methods Phys. Res., A 419 (1998) 538-543
In : 8th Vienna Wire Chamber Conference, Vienna, Austria, 23 - 27 Feb 1998, pp.538-43
6.
The CMS silicon tracker at LHC / Bilei, G M ; Albergo, S ; Angarano, M M ; Azzi, P ; Bacchetta, N ; Bagliesi, G ; Bartalini, P ; Basti, A ; Biggeri, U ; Bisello, D et al.
1998 - Published in : Nucl. Instrum. Methods Phys. Res., A 409 (1998) 105-111
7.
CMS silicon tracker developments / Civinini, C ; Albergo, S ; Angarano, M M (INFN Perugia and Univ., Bari, Italy) ; Azzi, P ; Babucci, E ; Bacchetta, N ; Bader, A ; Bagliesi, G ; Basti, A ; Biggeri, U et al.
The CMS Silicon tracker consists of 70 m/sup 2/ of microstrip sensors which design will be finalized at the end of 1999 on the basis of systematic studies of device characteristics as function of the most important parameters. A fundamental constraint comes from the fact that the detector has to be operated in a very hostile radiation environment with full efficiency. [...]
2002 - Published in : Nucl. Instrum. Methods Phys. Res., A 477 (2002) 440-5
In : 5th International Conference on Position-sensitive Detectors, London, UK, 13 - 17 Sep 1999, pp.440-5
8.
R & D for the CMS silicon tracker / Feld, L ; Albergo, S ; Angarano, M M ; Azzi, P ; Babucci, E ; Bacchetta, N ; Bader, A J ; Bagliesi, G ; Barr, A J ; Bartalini, P et al.
The CMS silicon tracker, consisting of about 70 m/sup 2/ of silicon microstrip devices, has to be operated for at least 10 years in a harsh radiation environment. The main implications of this environment on the detector design are summarized and an overview of the expected performance is given. [...]
Geneva : CERN, 1999 - Published in : Nucl. Phys. B, Proc. Suppl. 78 (1999) 322-8
9.
The silicon microstrip tracker for CMS / Pandoulas, D ; Albergo, S ; Angarano, M M ; Azzi, P ; Babucci, E ; Bacchetta, N ; Bader, A J ; Bagliesi, G ; Bartalini, P ; Basti, A et al.
The CMS silicon strip tracker involves about 70 m/sup 2/ of instrumented silicon, with approximately 18500 microstrip detectors read out by 5*10/sup 6/ electronics channels. It has to satisfy a set of stringent requirements imposed by the environment and by the physics expected at the LHC: low cell occupancy and good resolution, radiation hardness aided by adequate cooling, low mass combined with high stability. [...]
1999 - Published in : Nuovo Cimento A: 112 (1999) , no. 11, pp. 1307-16
- Published in : Nucl. Phys. B, Proc. Suppl. 78 (1999) 315-21
10.
Heavily irradiated double-sided wedge silicon microstrip detector / Bruzzi, Mara (INFN and Universita', Firenze, Italy) ; Catacchini, E ; D'Alessandro, R ; Parrini, G
1998 - Published in : Nucl. Instrum. Methods Phys. Res., A 409 (1998) 132-134

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