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Disappearance of Elliptic Flow: A New Probe for the Nuclear Equation of State
by
Danielewicz, P
, Alexander, J M
, McGrath, R L
, Chung, P
, Lacey, Roy A
, Pinkenburg, C
, P -B Gossiaux
in
Dependence
/ Equations of state
/ Excitation
/ Gluons
/ Nuclear matter
/ Phase transitions
/ Quark-gluon plasma
/ Quarks
/ Stiffness
1998
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Disappearance of Elliptic Flow: A New Probe for the Nuclear Equation of State
by
Danielewicz, P
, Alexander, J M
, McGrath, R L
, Chung, P
, Lacey, Roy A
, Pinkenburg, C
, P -B Gossiaux
in
Dependence
/ Equations of state
/ Excitation
/ Gluons
/ Nuclear matter
/ Phase transitions
/ Quark-gluon plasma
/ Quarks
/ Stiffness
1998
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Disappearance of Elliptic Flow: A New Probe for the Nuclear Equation of State
by
Danielewicz, P
, Alexander, J M
, McGrath, R L
, Chung, P
, Lacey, Roy A
, Pinkenburg, C
, P -B Gossiaux
in
Dependence
/ Equations of state
/ Excitation
/ Gluons
/ Nuclear matter
/ Phase transitions
/ Quark-gluon plasma
/ Quarks
/ Stiffness
1998
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Disappearance of Elliptic Flow: A New Probe for the Nuclear Equation of State
Paper
Disappearance of Elliptic Flow: A New Probe for the Nuclear Equation of State
1998
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Overview
Using a relativistic hadron transport model, we investigate the utility of the elliptic flow excitation function as a probe for the stiffness of nuclear matter and for the onset of a possible quark-gluon-plasma (QGP) phase-transition at AGS energies 1 < E_Beam < 11 AGeV. The excitation function shows a strong dependence on the nuclear equation of state, and exhibits characteristic signatures which could signal the onset of a phase transition to the QGP.
Publisher
Cornell University Library, arXiv.org
Subject
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