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Autor(en): 
  • Shuzhe Shi
  • Soft and Hard Probes of QCD Topological Structures in Relativistic Heavy-Ion Collisions 
     

    (Buch)
    Dieser Artikel gilt, aufgrund seiner Grösse, beim Versand als 2 Artikel!


    Übersicht

    Auf mobile öffnen
     
    Lieferstatus:   i.d.R. innert 14-24 Tagen versandfertig
    Veröffentlichung:  September 2019  
    Genre:  Naturwissensch., Medizin, Technik 
     
    B / Elementary particles (Physics) / Elementary Particles, Quantum Field Theory / Heavy ions / Mathematical physics / Nuclear physics / Nuclear Physics, Heavy Ions, Hadrons / Numerical and Computational Physics, Simulation / Physics / Physics and Astronomy / Quantum field theory / Quantum physics (quantum mechanics & quantum field theory) / Theoretical, Mathematical and Computational Physics
    ISBN:  9783030254810 
    EAN-Code: 
    9783030254810 
    Verlag:  Springer International Publishing 
    Einband:  Gebunden  
    Sprache:  English  
    Serie:  Springer Theses  
    Dimensionen:  H 241 mm / B 160 mm / D 15 mm 
    Gewicht:  412 gr 
    Seiten:  160 
    Zus. Info:  HC runder Rücken kaschiert 
    Bewertung: Titel bewerten / Meinung schreiben
    Inhalt:
    This thesis makes significant advances in the quantitative understanding of two intrinsically linked yet technically very different phenomena in quantum chromodynamics (QCD).  Firstly, the thesis investigates the soft probe of strong interaction topological fluctuations in the quark-gluon plasma (QGP) which is made possible via the anomalous chiral transport effects induced by such fluctuations. Here, the author makes contributions towards establishing the first comprehensive tool for quantitative prediction of the chiral magnetic effect in the QGP that is produced in heavy ion collision experiments. Secondly, the thesis deals with the hard probe of strongly coupled QGP created in heavy-ion collisions. In particular, this study addresses the basic question related to the nonperturbative color structure in the QGP via jet energy loss observables. The author further develops the CUJET computational model for jet quenching and uses it to analyze the topological degrees of freedomin quark-gluon plasma. The contributions this thesis makes towards these highly-challenging problems have already generated widespread impacts in the field of quark-gluon plasma and high-energy nuclear collisions.


      
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