Extracting the impact parameter dependence of the nPDFs from the EKS98 and EPS09 global fits
arXiv:1210.6133 · doi:10.1088/1742-6596/422/1/012021
Abstract
As all the globally fitted nuclear PDFs (nPDFs) have been so far impact parameter independent, it has not been possible to calculate the hard process cross sections in different centrality classes consistently with the global analyses. In \cite{Helenius:2012wd} we have offered a solution to this problem by determining two spatially dependent nPDF sets, \texttt{EPS09s} and \texttt{EKS98s}, using the -systematics of the earlier global fits EPS09 and EKS98 and an assumption that the spatial dependence can be written as a power series of the nuclear thickness function. For a data comparison, we have calculated the nuclear modification factor of inclusive neutral pion production in d+Au collisions at RHIC in four centrality bins at midrapidity and compared these to a PHENIX measurement. In addition, we have also performed a similar calculation for inclusive photon production in d+Au collisions at RHIC.
4 pages, 4 figures. Prepared for the Proceedings of "Heavy Ion Collisions in the LHC Era", Quy Nhon, Vietnam, July 16-20, 2012
References in corpus (4)
- EPS09 - a New Generation of NLO and LO Nuclear Parton Distribution Functions
- Global analysis of fragmentation functions for pions and kaons and their uncertainties
- Centrality Dependence of pi^0 and eta Production at Large Transverse Momentum in sqrt(s_NN) = 200 GeV d+Au Collisions
- Impact-parameter dependent nuclear parton distribution functions: EPS09s and EKS98s and their applications in nuclear hard processes