Papers
Topics
Authors
Recent
Search
2000 character limit reached

Challenging claims of "elliptic flow" by comparing azimuth quadrupole and jet-related angular correlations from Au-Au collisions at sNN=\sqrt{s_{NN}} = 62 and 200 GeV

Published 1 Feb 2013 in hep-ph and nucl-th | (1302.0300v2)

Abstract: Background: A component of azimuth correlations from high-energy heavy ion collisions varying as cos(2ϕ)\cos(2\phi) and denoted by symbol v2v_2 is conventionally interpreted to represent "elliptic flow," a hydrodynamic manifestation of the initial-state \aa overlap geometry. Several numerical methods are used to estimate v2v_2, resulting in various combinations of "flow" and "nonflow" that reveal systematic biases in the v2v_2 estimates. QCD jets contribute strongly to azimuth correlations and specifically to the cos(2ϕ)\cos(2\phi) component. Purpose: We question the extent of jet-related ("nonflow") bias in and hydrodynamic "flow" interpretations of v2v_2 measurements. Method: We introduce two-dimensional (2D) model fits to angular correlation data that distinguish accurately between jet-related correlation components and a {\em nonjet azimuth quadrupole} that might represent "elliptic flow" if that were relevant. We compare measured jet-related and "flow"-related data systematics and determine the jet-related contribution to v2v_2 measurements. Results: Jet structure does introduce substantial bias to conventional v2v_2 measurements, making interpretation difficult. The nonjet quadrupole exhibits very simple systematics on centrality and collision energy---the two variables factorize. Within a \auau centrality interval where jets show no indication of rescattering or medium effects the nonjet quadrupole amplitude rises to 60% of its maximum value. Conclusions: Disagreements between nonjet quadrupole systematics and hydro theory expectations, the large quadrupole amplitudes observed in more-peripheral \auau collisions and a significant nonzero value in \nn \approx \pp collisions strongly suggest that the nonjet quadrupole does not arise from a hydrodynamic "flow" mechanism.

Summary

No one has generated a summary of this paper yet.

Paper to Video (Beta)

No one has generated a video about this paper yet.

Whiteboard

No one has generated a whiteboard explanation for this paper yet.

Open Problems

We haven't generated a list of open problems mentioned in this paper yet.

Continue Learning

We haven't generated follow-up questions for this paper yet.