Rak / Tannenbaum | High-pT Physics in the Heavy Ion Era | Buch | 978-0-521-19029-9 | www.sack.de

Buch, Englisch, Band 34, 396 Seiten, Format (B × H): 175 mm x 250 mm, Gewicht: 864 g

Reihe: Cambridge Monographs on Particle Physics, Nuclear Physics and Cosmology

Rak / Tannenbaum

High-pT Physics in the Heavy Ion Era


Erscheinungsjahr 2018
ISBN: 978-0-521-19029-9
Verlag: Cambridge University Press

Buch, Englisch, Band 34, 396 Seiten, Format (B × H): 175 mm x 250 mm, Gewicht: 864 g

Reihe: Cambridge Monographs on Particle Physics, Nuclear Physics and Cosmology

ISBN: 978-0-521-19029-9
Verlag: Cambridge University Press


Aimed at graduate students and researchers in the field of high-energy nuclear physics, this book provides an overview of the basic concepts of large transverse momentum particle physics, with a focus on pQCD phenomena. It examines high-pT probes of relativistic heavy-ion collisions and will serve as a handbook for those working on RHIC and LHC data analyses. Starting with an introduction and review of the field, the authors look at basic observables and experimental techniques, concentrating on relativistic particle kinematics, before moving onto a discussion about the origins of high-pT physics. The main features of high-pT physics are placed within a historical context and the authors adopt an experimental outlook, highlighting the most important discoveries leading up to the foundation of modern QCD theory. Advanced methods are described in detail, making this book especially useful for newcomers to the field.

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Weitere Infos & Material


1. Introduction and overview; 2. Experimental facilities; 3. Basic observables; 4. Some experimental techniques; 5. The search for structure; 6. Origins of high pT physics - the search for the W Boson; 7. Discovery of hard scattering in p+p collisions; 8. Direct-single lepton production and the discovery of charm; 9. J/?, u and Drell-Yan pair production; 10. Two particle correlations; 11. Direct photon production; 12. The search for jets; 13. QCD in hard-scattering, the factorization theorem; 14. Application to RHIC; 15. Application to LHC; Appendix A. Probability and statistics; Appendix B. Monte Carlo calculations; Appendix C. Fits and systematic errors; Appendix D. The shape of the xE distribution triggered by a jet fragment; Appendix E. kT phenomenology and Gaussian smearing; Appendix F. Lorentz invariant kT smearing; References; Index.


Tannenbaum, Michael J.
Michael J. Tannenbaum is a Senior Scientist within the Physics Department at Brookhaven National Laboratory. His achievements include measurement of the statistics of the muon, and discoveries in hard-scattering of quarks and gluons at the CERN-ISR which he applied to the discovery of jet-quenching in collisions of nuclei at the RHIC, USA.

Rak, Jan
Jan Rak is a Senior Research Scientist in the Department of Physics at Jyväskylä University, Finland. He is also project leader of ALICE/CERN for Finland and was involved in the CERES/SPS experiment at CERN, Switzerland and the PHENIX experiment at the RHIC, USA.

Jan Rak is a Senior Research Scientist in the Department of Physics at Jyväskylä University, Finland. He is also project leader of ALICE/CERN for Finland and was involved in the CERES/SPS experiment at CERN, Switzerland and the PHENIX experiment at the RHIC, USA.

Michael J. Tannenbaum is a Senior Scientist within the Physics Department at Brookhaven National Laboratory. His achievements include measurement of the statistics of the muon, and discoveries in hard-scattering of quarks and gluons at the CERN-ISR which he applied to the discovery of jet-quenching in collisions of nuclei at the RHIC, USA.



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