Results from high energy nucleus-nucleus collisions at RHIC have shown the importance of particle identification in a very large momentum range, in particular for protons. The ALICE experiment has unique capabilities to identify particles; however its momentum coverage for track-by-track identificat
The VHMPID RICH upgrade project for ALICE at LHC
β Scribed by A. Di Mauro; A. Agocs; R. Alfaro; G.G. Barnafoldi; G. Bencze; L. Boldizsar; E. Cuautle; G. DeCataldo; E. Denes; D. DiBari; I. Dominguez; Z. Fodor; E. Futo; E. Garcia; G. Hamar; J.W. Harris; P. Levai; C. Lipusz; P. Martinengo; D. Mayani; L. Molnar; E. Nappi; A. Ortiz; G. Paic; C. Pastore; D. Perini; V. Peskov; F. Piuz; S. Pochybova; I. Sgura; N. Smirnov; C. Son; J.B. Van Beelen; D. Varga; G. Volpe; J. Yi; I.K. Yoo
- Publisher
- Elsevier Science
- Year
- 2011
- Tongue
- English
- Weight
- 555 KB
- Volume
- 639
- Category
- Article
- ISSN
- 0168-9002
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The Transition Radiation Detector (TRD) for the ALICE experiment at the Large Hadron Collider (LHC) identifies electrons in p+p and in the challenging high multiplicity environment of heavy-ion collisions and provides fast online tracking for the ALICE Level1 trigger. The TRD is designed to have exc
The Transition Radiation Detector for the ALICE experiment at the LHC has been developed. It is designed to perform electron identification and on-line tracking of charged particles in the challenging high multiplicity environment of heavy-ion collisions. Thus excellent position resolution and pion