Event-by-event viscous hydrodynamics for Cu-Au collisions at 200GeV
arXiv:1208.1887 · doi:10.1016/j.physletb.2012.09.040
Abstract
Event-by-event hydrodynamics is applied to Cu-Au collisions at 200GeV. Predictions for charged particle distributions in pseudorapidity, transverse momentum spectra, femtoscopy radii are given. The triangular and elliptic flow coefficients are calculated. The directed flow at central rapidity in the reaction plane in asymmetric collisions is nonzero, fluctuations of the initial profile lead to a further increase of the directed flow when measured in the event plane.
revised presentation
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Cited by in corpus (6)
- Charge-dependent directed flow in asymmetric nuclear collisions
- Size of the emission source and collectivity in ultra-relativistic p-Pb collisions
- Charge-dependent directed flow in Cu+Au collisions at = 200 GeV
- Directed flow in relativistic resistive magneto-hydrodynamic expansion for symmetric and asymmetric collision systems
- Particle productions and anisotropic flows from the AMPT model for Cu+Au collisions at GeV
- Probing Nuclear Geometry through Multi-Particle Azimuthal Correlations and Rapidity-Even Dipolar Flow in O+O Collisions