Sudhir Bhardwaj:Particle Correlations in Ultra Relativistic Heavy Ion Collisions
- Pasta blanda ISBN: 9783847304401
[ED: Taschenbuch], [PU: LAP Lambert Academic Publishing], Neuware - Quantum Chromodynamics calculations on the lattice predict that at extremely high energy densities, colliding nuclear m… Más…
[ED: Taschenbuch], [PU: LAP Lambert Academic Publishing], Neuware - Quantum Chromodynamics calculations on the lattice predict that at extremely high energy densities, colliding nuclear matter would undergo a phase transition to deconfined matter of quarks and gluons. The nature of transition, the temperature and the energy density at which the transition occurs depend upon the details of calculations these depend upon the number of quark flavors introduced in the calculation. This deconfined state of quark and gluons has been named Quark Gluon Plasma(QGP). This work purports to understand the azimuthal distribution of photons produced in Cu+Cu collisions at 200 GeV with Photon Multiplicity Detector (PMD). The PMD is part of the STAR (Solenoidal Tracker At RHIC) experiment.PMD covers a pseudorapidity range of -3.7 to -2.3 with full azimuthal coverage and measures the multiplicity and spatial distribution of photons on an event-by-event basis.The value of second order azimuthal coefficient has been determined for different centralities in different pseudorapidity windows and its pseudorapidity and centrality dependence has been obtained., DE, [SC: 0.00], Neuware, gewerbliches Angebot, 220x150x8 mm, 136, [GW: 219g], PayPal, Offene Rechnung, Banküberweisung, Sofortüberweisung, Internationaler Versand<
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Sudhir Bhardwaj#Sudhir Raniwala#Rashmi Raniwala:Bhardwaj, S: Particle Correlations in Ultra Relativistic Hea
- Pasta blanda 2011, ISBN: 9783847304401
Quantum Chromodynamics calculations on the lattice predict that at extremely high energy densities, colliding nuclear matter would undergo a phase transition to deconfined matter of quark… Más…
Quantum Chromodynamics calculations on the lattice predict that at extremely high energy densities, colliding nuclear matter would undergo a phase transition to deconfined matter of quarks and gluons. The nature of transition, the temperature and the energy density at which the transition occurs depend upon the details of calculations; these depend upon the number of quark flavors introduced in the calculation. This deconfined state of quark and gluons has been named Quark Gluon Plasma(QGP). This work purports to understand the azimuthal distribution of photons produced in Cu+Cu collisions at 200 GeV with Photon Multiplicity Detector (PMD). The PMD is part of the STAR (Solenoidal Tracker At RHIC) experiment.PMD covers a pseudorapidity range of -3.7 to -2.3 with full azimuthal coverage and measures the multiplicity and spatial distribution of photons on an event-by-event basis.The value of second order azimuthal coefficient has been determined for different centralities in different pseudorapidity windows and its pseudorapidity and centrality dependence has been obtained. Buch (fremdspr.) Sudhir Bhardwaj#Sudhir Raniwala#Rashmi Raniwala Taschenbuch, LAP LAMBERT Academic Publishing, 01.12.2011, LAP LAMBERT Academic Publishing, 2011<
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Particle Correlations in Ultra Relativistic Heavy Ion Collisions
- libro nuevoISBN: 9783847304401
Quantum Chromodynamics calculations on the lattice predict that at extremely high energy densities, colliding nuclear matter would undergo a phase transition to deconfined matter of quark… Más…
Quantum Chromodynamics calculations on the lattice predict that at extremely high energy densities, colliding nuclear matter would undergo a phase transition to deconfined matter of quarks and gluons. The nature of transition, the temperature and the energy density at which the transition occurs depend upon the details of calculations, these depend upon the number of quark flavors introduced in the calculation. This deconfined state of quark and gluons has been named Quark Gluon Plasma(QGP). This work purports to understand the azimuthal distribution of photons produced in Cu+Cu collisions at 200 GeV with Photon Multiplicity Detector (PMD). The PMD is part of the STAR (Solenoidal Tracker At RHIC) experiment.PMD covers a pseudorapidity range of -3.7 to -2.3 with full azimuthal coverage and measures the multiplicity and spatial distribution of photons on an event-by-event basis.The value of second order azimuthal coefficient has been determined for different centralities in different pseudorapidity windows and its pseudorapidity and centrality dependence has been obtained. Bücher, Hörbücher & Kalender / Bücher / Sachbuch / Naturwissenschaften / Physik / Atomlehre<
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Sudhir Bhardwaj|Sudhir Raniwala|Rashmi Raniwala:Particle Correlations in Ultra Relativistic Heavy Ion Collisions
- Pasta blanda 2011, ISBN: 3847304402
[EAN: 9783847304401], Neubuch, [PU: LAP LAMBERT Academic Publishing], PHYSIK ASTRONOMIE ATOMPHYSIK KERNPHYSIK RELATIVISITIC HEAVY ION COLLISIONS QUARK-GLUON PLASMA, Dieser Artikel ist ein… Más…
[EAN: 9783847304401], Neubuch, [PU: LAP LAMBERT Academic Publishing], PHYSIK ASTRONOMIE ATOMPHYSIK KERNPHYSIK RELATIVISITIC HEAVY ION COLLISIONS QUARK-GLUON PLASMA, Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Autor/Autorin: Bhardwaj SudhirDr. Sudhir Bhardwaj is presently working as an Assistant Professor in Physics at Govt. College of Engineering and Technology, Bikaner. He did his research work at Variable Energy Cyclotron Center, Kolkata, INDIA and Br., Books<
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Bhardwaj, S:Particle Correlations in Ultra Relativistic Hea
- Pasta blanda 2011, ISBN: 9783847304401
Erscheinungsdatum: 12/2011, Medium: Taschenbuch, Einband: Kartoniert / Broschiert, Titel: Particle Correlations in Ultra Relativistic Heavy Ion Collisions, Titelzusatz: In Search of Quark… Más…
Erscheinungsdatum: 12/2011, Medium: Taschenbuch, Einband: Kartoniert / Broschiert, Titel: Particle Correlations in Ultra Relativistic Heavy Ion Collisions, Titelzusatz: In Search of Quark Gluon Plasma, Autor: Bhardwaj, Sudhir // Raniwala, Sudhir // Raniwala, Rashmi, Verlag: LAP Lambert Academic Publishing, Sprache: Englisch, Rubrik: Atomphysik // Kernphysik, Seiten: 136, Informationen: Paperback, Gewicht: 219 gr, Verkäufer: averdo Belletristik<
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