Relativistic Dissipative Hydrodynamic Description of the Quark-Gluon Plasma
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Relativistic Dissipative Hydrodynamic Description of the Quark-Gluon Plasma (2014)
HC NW
ISBN: 9784431547976 bzw. 4431547975, Sprache unbekannt, Springer, gebundenes Buch, neu.
Lieferung aus: Schweiz, Versandfertig innert 3 - 5 Werktagen.
This thesis presents theoretical and numerical studies on phenomenological description of the quark-gluon plasma (QGP), a many-body system of elementary particles. Presents novel off-equilibrium hydrodynamic models for the longitudinal expansion of the QGP. This thesis presents theoretical and numerical studies on phenomenological description of the quark-gluon plasma (QGP), a many-body system of elementary particles.The author formulates a causal theory of hydrodynamics for systems with net charges from the law of increasing entropy and a momentum expansion method. The derived equation results can be applied not only to collider physics, but also to the early universe and ultra-cold atoms.The author also develops novel off-equilibrium hydrodynamic models for the longitudinal expansion of the QGP on the basis of these equations. Numerical estimations show that convection and entropy production during the hydrodynamic evolution are key to explaining excessive charged particle production, recently observed at the Large Hadron Collider. Furthermore, the analyses at finite baryon density indicate that the energy available for QGP production is larger than the amount conventionally assumed. gebundene Ausgabe, 30.01.2014.
This thesis presents theoretical and numerical studies on phenomenological description of the quark-gluon plasma (QGP), a many-body system of elementary particles. Presents novel off-equilibrium hydrodynamic models for the longitudinal expansion of the QGP. This thesis presents theoretical and numerical studies on phenomenological description of the quark-gluon plasma (QGP), a many-body system of elementary particles.The author formulates a causal theory of hydrodynamics for systems with net charges from the law of increasing entropy and a momentum expansion method. The derived equation results can be applied not only to collider physics, but also to the early universe and ultra-cold atoms.The author also develops novel off-equilibrium hydrodynamic models for the longitudinal expansion of the QGP on the basis of these equations. Numerical estimations show that convection and entropy production during the hydrodynamic evolution are key to explaining excessive charged particle production, recently observed at the Large Hadron Collider. Furthermore, the analyses at finite baryon density indicate that the energy available for QGP production is larger than the amount conventionally assumed. gebundene Ausgabe, 30.01.2014.
2
Relativistic Dissipative Hydrodynamic Description of the Quark-Gluon Plasma
NW
ISBN: 9784431547976 bzw. 4431547975, Sprache unbekannt, Springer, neu.
Lieferung aus: Österreich, プラス送料, Versandfertig innerhalb 48 Stunden.
This thesis presents theoretical and numerical studies on phenomenological description of the quark-gluon plasma (QGP), a many-body system of elementary particles. Presents novel off-equilibrium hydrodynamic models for the longitudinal expansion of the QGP. This thesis presents theoretical and numerical studies on phenomenological description of the quark-gluon plasma (QGP), a many-body system of elementary particles.The author formulates a causal theory of hydrodynamics for systems with net charges from the law of increasing entropy and a momentum expansion method. The derived equation results can be applied not only to collider physics, but also to the early universe and ultra-cold atoms.The author also develops novel off-equilibrium hydrodynamic models for the longitudinal expansion of the QGP on the basis of these equations. Numerical estimations show that convection and entropy production during the hydrodynamic evolution are key to explaining excessive charged particle production, recently observed at the Large Hadron Collider. Furthermore, the analyses at finite baryon density indicate that the energy available for QGP production is larger than the amount conventionally assumed.
This thesis presents theoretical and numerical studies on phenomenological description of the quark-gluon plasma (QGP), a many-body system of elementary particles. Presents novel off-equilibrium hydrodynamic models for the longitudinal expansion of the QGP. This thesis presents theoretical and numerical studies on phenomenological description of the quark-gluon plasma (QGP), a many-body system of elementary particles.The author formulates a causal theory of hydrodynamics for systems with net charges from the law of increasing entropy and a momentum expansion method. The derived equation results can be applied not only to collider physics, but also to the early universe and ultra-cold atoms.The author also develops novel off-equilibrium hydrodynamic models for the longitudinal expansion of the QGP on the basis of these equations. Numerical estimations show that convection and entropy production during the hydrodynamic evolution are key to explaining excessive charged particle production, recently observed at the Large Hadron Collider. Furthermore, the analyses at finite baryon density indicate that the energy available for QGP production is larger than the amount conventionally assumed.
3
Relativistic Dissipative Hydrodynamic Description of the Quark-Gluon Plasma
NW
ISBN: 9784431547976 bzw. 4431547975, Sprache unbekannt, Springer Japan, neu.
Lieferung aus: Kanada, 入荷, プラス送料.
Die Beschreibung dieses Angebotes ist von geringer Qualität oder in einer Fremdsprache. Trotzdem anzeigen
Die Beschreibung dieses Angebotes ist von geringer Qualität oder in einer Fremdsprache. Trotzdem anzeigen
4
Relativistic Dissipative Hydrodynamic Description of the Quark-Gluon Plasma
HC NW
ISBN: 9784431547976 bzw. 4431547975, Sprache unbekannt, Springer Japan, gebundenes Buch, neu.
Lieferung aus: Vereinigte Staaten von Amerika, 入荷, プラス送料.
Die Beschreibung dieses Angebotes ist von geringer Qualität oder in einer Fremdsprache. Trotzdem anzeigen
Die Beschreibung dieses Angebotes ist von geringer Qualität oder in einer Fremdsprache. Trotzdem anzeigen
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