Anisotropic flow: A case for Bottomonia
arXiv:1802.00414 · doi:10.1142/S0217751X18500926
Abstract
Studies of at RHIC and LHC energies have provided important elements towards the understanding on the production mechanisms and on the thermalization of charm quarks. Bottomonia has an advantage since it is a cleaner probe. A brief discussion has been provided for , which can become the new probe for QGP, including the necessity of studies for small systems.
15 pages (This version is most updated)
References in corpus (17)
- J/psi Production vs Centrality, Transverse Momentum, and Rapidity in Au+Au Collisions at sqrt(s_NN) = 200 GeV
- Triangularity and Dipole Asymmetry in Heavy Ion Collisions
- Observation of sequential Upsilon suppression in PbPb collisions
- Quarkonium suppression in heavy-ion collisions: an open quantum system approach
- Momentum spectra, anisotropic flow, and ideal fluids
- Elliptic Flow: A Brief Review
- Color Screening and Regeneration of Bottomonia in High-Energy Heavy-Ion Collisions
- Heavy flavor in heavy-ion collisions at RHIC and RHIC II
- J/psi production at high transverse momentum in p+p and Cu+Cu collisions at \sNN=200GeV
- Suppression of (1S) at forward rapidity in Pb-Pb collisions at = 2.76 TeV
- Multiparticle collectivity from initial state correlations in high energy proton-nucleus collisions
- Production of inclusive (1S) and (2S) in p-Pb collisions at TeV
- J/ elliptic flow in Pb-Pb collisions at = 5.02 TeV
- Charmonium properties in deconfinement phase in anisotropic lattice QCD
- Anisotropic flow in transport+hydrodynamics hybrid approaches
- production and elliptic flow in relativistic heavy-ion collisions
- Quarkonium formation time in relativistic heavy-ion collisions
Cited by in corpus (6)
- Open Quantum Systems for Quarkonia
- Anisotropic escape mechanism and elliptic flow of bottomonia
- Blast-wave description of elliptic flow at energies available at the CERN Large Hadron Collider
- Perspectives in Small Systems : Heavy Quarks and HBT Radii
- Exploring sQGP and Small Systems
- Implications of correlations and fluctuations in small systems