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- W1813606176 abstract "Using event-by-event viscous fluid dynamics to evolve fluctuating initial density profiles from the Monte-Carlo Glauber model for U+U collisions, we report a knee-like structure in the elliptic flow as a function of collision centrality, located around the 0.5% most central collisions as measured by the final charged multiplicity. This knee is due to the preferential selection of tip-on-tip collision geometries by a high-multiplicity trigger. Such a knee structure is not seen in the STAR data. This rules out the two-component MC-Glauber model for initial energy and entropy production. Hence an enrichment of tip-tip configurations by triggering solely on high-multiplicity in the U+U collisions does not work. On the other hand, by using the Zero Degree Calorimeters (ZDCs) coupled with event-shape engineering such a selection is possible. We identify the selection purity of body-body and tip-tip events in full-overlap U+U collisions. By additionally constraining the asymmetry of the ZDC signals we can further increase the probability of selecting tip-tip events in U+U collisions." @default.
- W1813606176 created "2016-06-24" @default.
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- W1813606176 date "2015-10-07" @default.
- W1813606176 modified "2023-10-02" @default.
- W1813606176 title "Collision geometry and flow in uranium + uranium collisions" @default.
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- W1813606176 doi "https://doi.org/10.1103/physrevc.92.044903" @default.
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