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Global flow of glasma in high energy nuclear collisions
Pub type: Article
Citation: Chen2013417
Status: Published
Journal: Physics Letters B
Volume: 723
Year: 2013
Month: June
Pages: 417 - 421
ISSN: 0370-2693
URL: http://www.sciencedirect.com/s...
DOI: 10.1016/j.physletb.2013.05.031
Abstract: We discuss the energy flow of the classical gluon fields created in collisions of heavy nuclei at collider energies. We show how the Yang–Mills analog of Faradayʼs Law and Gaussʼ Law predicts the initial gluon flux tubes to expand or bend. The resulting transverse and longitudinal structure of the Poynting vector field has a rich phenomenology. Besides the well-known radial and elliptic flow in transverse direction, classical quantum chromodynamics predicts a rapidity-odd transverse flow that tilts the fireball for non-central collisions, and it implies a characteristic flow pattern for collisions of non-symmetric systems A + B . The rapidity-odd transverse flow translates into a directed particle flow v 1 which has been observed at \{RHIC\} and LHC. The global flow fields in heavy ion collisions could be a powerful check for the validity of classical Yang–Mills dynamics in high energy collisions.
Month_val: 6
Userfields: issue = {4-5}
Sig contrib: R. J. Fries
Keywords: Color glass condensate, Heavy-ion collisions, Quantum chromodynamics
Authors: Chen, Guangyao
Fries, Rainer J.
Added by: [DGM]
Total mark: 0
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