Event-by-event analysis of chiral charge separation in p+Au collisions within an improved AMPT model
Chen Gao, Gui-Zhen Wu, Yi Xu, Wei-Tian Deng
Abstract
We study the charge separation induced by chiral magnetic effect (CME) in p+Au collisions at sNN=200 GeV event-by-event with an improved string-melting AMPT model. In this model, an impact-parameter-dependent formation-time delay is introduced to reduce the peak Bjorken energy density from 2 to 0.3 GeV/fm3 and reproduces the illiptic flow v2(pT) measured by PHENIX in p+Au simultaneously. The event-by-event CME source, whose quark momentum-exchange fraction scales with |B|event/|B|max and is capped at the 7\% value from Au+Au, transmits the field geometry directly to the observable. We find that the initial correlator shows a clear scheme hierarchy tracking B2. The parton cascade preserves 80--90\% of the signal, while coalescence and ART hadronic rescattering dissipate the bulk, leaving 10--30\% in the final state. The γOS/γSS splitting remains visible. These results support the use of the inter-scheme difference ΔγIV-ΔγII as an essentially background-free CME observable as we proposed in previous work.
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