A flow paradigm in heavy-ion collisions. Yan, L. Chinese Physics C, 42(4):042001, April, 2018. arXiv: 1712.04580Paper doi abstract bibtex The success of hydrodynamics in high energy heavy-ion collisions leads to a flow paradigm, to understand the observed features of harmonic flow in terms of the medium collective expansion regarding initial state geometrical properties. In this review, we present some essential ingredients in the flow paradigm, including the hydrodynamic modeling, the characterization of initial state geometry and the medium response relations. The extension of the flow paradigm to small colliding systems is also discussed.
@article{yan_flow_2018,
title = {A flow paradigm in heavy-ion collisions},
volume = {42},
issn = {1674-1137},
url = {http://arxiv.org/abs/1712.04580},
doi = {10.1088/1674-1137/42/4/042001},
abstract = {The success of hydrodynamics in high energy heavy-ion collisions leads to a flow paradigm, to understand the observed features of harmonic flow in terms of the medium collective expansion regarding initial state geometrical properties. In this review, we present some essential ingredients in the flow paradigm, including the hydrodynamic modeling, the characterization of initial state geometry and the medium response relations. The extension of the flow paradigm to small colliding systems is also discussed.},
number = {4},
urldate = {2020-02-23},
journal = {Chinese Physics C},
author = {Yan, Li},
month = apr,
year = {2018},
note = {arXiv: 1712.04580},
keywords = {High Energy Physics - Phenomenology, Nuclear Experiment, Nuclear Theory},
pages = {042001}
}
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