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Many high-energy experiments which include the present Large Hadron Collider at CERN constitute the aspect of collisions of hadrons.These hadrons can be viewed as composite particles consisting of partons (quarks and gluons). They combine to form larger particles, such as protons and neutrons. Multiple-parton interactions are important in searching for new physics phenomenologies surrounding the Quark Gluon Plasma. This also helps in giving an upper hand in understanding the structure of hadrons. This book aims at providing the balance between the two mostly argued paradigms of hydrodynamics…mehr

Produktbeschreibung
Many high-energy experiments which include the present Large Hadron Collider at CERN constitute the aspect of collisions of hadrons.These hadrons can be viewed as composite particles consisting of partons (quarks and gluons). They combine to form larger particles, such as protons and neutrons. Multiple-parton interactions are important in searching for new physics phenomenologies surrounding the Quark Gluon Plasma. This also helps in giving an upper hand in understanding the structure of hadrons. This book aims at providing the balance between the two mostly argued paradigms of hydrodynamics and Color Glass Condensate in relation to their contribution to collectivity with much emphasis on the latter approach (CGC). It is written by a young scientist and reviews significant theoretical developments in comparison to existing experimental data as well as opening other frontiers of future studies.
Autorenporträt
My name is Manyika Kabuswa Davy, and I am a PhD student at Central China Normal University. I have worked as a high school Physics teacher from December 2011 to date.I am a native of Zambia and I studied Physics at the University of Zambia and received my MSc from Central China Normal University under the Institute of Particle Physics.