![]() |
Ядерна фізика та енергетика
ISSN:
1818-331X (Print), 2074-0565 (Online) |
Home page | About |
Silicon tracker for the compressed baryonic matter experiment
M. S. Borysova1, V. O. Kyva1, A. O. Lymanets1,2, V. M. Militsiya1, O. Y. Okhrimenko1, V. M. Pugatch1, J. M. Heuser2
1Institute for Nuclear Research, National Academy of Sciences of Ukraine, Kyiv, Ukraine
2Centre for Heavy Ion Research (GSI), Darmstadt, Germany
Abstract: Design of STS and module prototype of silicon micro-strip detector for particle momenta measurements with a resolution of around Δp/p ≈ 1% are presented. Very high radiation level and inhomogeneous track distribution result in modular construction of the detector stations. The micro-strip detectors are planned to be read out with the help of СВМ-XYTER chip. The system requirements include radiation tolerant sensors with high spatial resolution and a fast readout compatible with high-level-only triggers. Concept of the silicon detection system and the R&D on micro-strip sensors as well as front-end electronics for the building blocks of the detector stations are discussed.
References:1. Augustin I., Beier T. W., Berghöfer K. et al. The FAIR Project in 2005. GSI Report 2006-1 (2006) p. 1.
2. Deptuch G., Claus G., Colledani C. et al. Monolithic Active Pixel Sensors with in-pixel double sampling operation and column level discrimination Proceedings of IEEE NSS NSS-MIC 2003 (USA, Portland, October 19 - 24) Vol. 1, p. 551.
3. Dulinski W., Berst J. -D., Besson A. et al. CMOS Monolithic Active Pixel Sensors for Minimum Ionizing Particle Tracking Using Non-Epitaxial Silicon Substrate. IEEE Transactions on Nuclear Science 51 (2004) 1613. https://doi.org/10.1109/TNS.2004.832947
4. Інформація з сайту: http://ireswww.in2p3.fr/ires/recherche/capteurs/index
5. ALICE Collaboration, Addendum to ALICE Proposal, CERN/LHCC 99-13, LHCC/P3 Addendum 2 (1999).
6. Fodor Z., Katz S. D. Lattice determination of the critical point of QCD at finite T and μ. Journal of High Energy Physics 2002 (2002) 014. https://doi.org/10.1088/1126-6708/2002/03/014
7. Sinyukov Yu. M., Akkelin S. V., Hama Y. Freeze-Out Problem in Hydrokinetic Approach to A + A Collisions. Phys. Rev. Lett. 89 (2002) 052301. https://doi.org/10.1103/PhysRevLett.89.052301
8. Борисова М. С. Кореляції піонів у високоенергетичних ядро-ядерних зіткненнях: Дис. ... канд. фіз.- мат. наук: 01.04.16 (Київ, 2005) 118 c.
9. Heuser J. M. A High-Performance Silicon Tracker for the CBM Experiment at FAIR. AIP Conf. Proc. 842 (2006) 1073. https://doi.org/10.1063/1.2220457
10. Heuser J. M., Muller W. F. J., Senger P. et al. A high-performance silicon tracker for the Compressed Baryonic Matter experiment at FAIR. Czech. J. Phys. 55 (2005) 1649. https://doi.org/10.1007/s10582-006-0054-1
11. Heuser J. M., Deveaux M., Müntz C., Stroth J. Requirements for the Silicon Tracking System of CBM at FAIR. Nucl. Instrum. Methods Phys. Res. A 568 (2006) 258. https://doi.org/10.1016/j.nima.2006.05.238
12. The UrQMD Collaboration. http://www.th.physik.unifrankfurt.de/urqmd/
13. Інформація з сайту: http://www.agaeroplast.com/
14. Rosenfeld A. B., Pavlenko Yu., Vasiliev Yu. et al. Strip detector for short-range particles. Nucl. Instr. and Meth. A 326 (1993) 234. https://doi.org/10.1016/0168-9002(93)90357-N