arXiv · 1602.02286
Statistical-noise reduction in correlation analysis of high-energy nuclear collisions with event-mixing
Abstract
The error propagation and statistical-noise reduction method of Reid and Trainor for two-point correlation applications in high-energy collisions is extended to include particle-pair references constructed by mixing two particles from all event-pair combinations within event subsets of arbitrary size. The Reid-Trainor method is also applied to other particle-pair mixing algorithms commonly used in correlation analysis of particle production from high-energy nuclear collisions. The statistical-noise reduction, inherent in the Reid-Trainor event-mixing procedure, is shown to occur for these other event-mixing algorithms as well. Monte Carlo simulation results are presented which verify the predicted degree of noise reduction. In each case the final errors are determined by the bin-wise particle-pair number, rather than by the bin-wise single-particle count.
Explore related subjects
Keep this discovery
R. L. Ray, P. Bhattarai. 2016-02-06. Statistical-noise reduction in correlation analysis of high-energy nuclear collisions with event-mixing. https://doi.org/10.1016/j.nima.2016.03.058
Cite the original work for its findings. Save a collection to share your selection of sources.