Possibility to disentangle anisotropic flow, flow fluctuation, and nonflow assuming Gaussian fluctuations
arXiv:1101.4646 · doi:10.1088/0954-3899/40/3/035111
Abstract
We suggest the possibility to disentangle anisotropic flow, flow fluctuation, and nonflow using two-, four-, and six-particle azimuthal moments assuming Gaussian fluctuations. We show that such disentanglement is possible when the flow fluctuations are large, comparable to the average flow magnitude. When fluctuations are small, the disentanglement becomes difficult. We verify our results with a toy-model Monte Carlo simulation.
6 pages, 1 table, 1 figure. Shortened introduction, removed appendices with technical details, added a reference to S Voloshin's earlier study on the subject, and several other changes to improve the discussions. Clarified the role of harmonic planes and definite positivity in experimental "flow" measurements, published version
References in corpus (11)
- Systematic Measurements of Identified Particle Spectra in pp, d+Au and Au+Au Collisions from STAR
- Collision geometry fluctuations and triangular flow in heavy-ion collisions
- Triangular flow in hydrodynamics and transport theory
- Triangular flow in event-by-event ideal hydrodynamics in Au+Au collisions at GeV
- Elliptic flow in the Gaussian model of eccentricity fluctuations
- Relativistic Theory of Hydrodynamic Fluctuations with Applications to Heavy Ion Collisions
- Effect of flow fluctuations and nonflow on elliptic flow methods
- Non-flow correlations and elliptic flow fluctuations in gold-gold collisions at sqrt(s_NN)= 200 GeV
- Elliptic flow fluctuations in Au+Au collisions at GeV
- Elliptic flow fluctuations and correlations in Au+Au collisions at GeV
- A method for determining event-by-event elliptic flow fluctuations based on the first-order event plane in heavy-ion collisions