Affiliation:
1. Institute of Theoretical Science and Department of Physics, University of Oregon, Eugene, OR 97403-5203, USA
Abstract
The transition from quarks to hadrons in a heavy-ion collision at high energy is usually studied in two different contexts that involve very different transverse scales: local and nonlocal. Models that are concerned with thepTspectra and azimuthal anisotropy belong to the former, that is, hadronization at a local point in(η,ϕ)space, such as the recombination model. The nonlocal problem has to do with quark-hadron phase transition where collective behavior through near-neighbor interaction can generate patterns of varying sizes in the(η,ϕ)space. The two types of problems are put together in this paper both as brief reviews separately and to discuss how they are related to each other. In particular, we ask how minijets produced at LHC can affect the investigation of multiplicity fluctuations as signals of critical behavior. It is suggested that the existing data from LHC have sufficient multiplicities in smallpTintervals to make the observation of distinctive features of clustering of soft particles, as well as voids, feasible that characterize the critical behavior at phase transition from quarks to hadrons, without any ambiguity posed by the clustering of jet particles.
Subject
Nuclear and High Energy Physics
Cited by
7 articles.
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