arXiv:2506.22721·v3·Nuclear Theory
Elliptic flow of charged hadrons in d+Au collisions at 200 GeV using a multi-phase transport model
Jaideep Tanwar🇮🇳 · Ishu Aggarwal🇮🇳 · Vipul Bairathi🇮🇳 · Lokesh Kumar🇨🇱 · Sonia Kabana🇨🇱
Abstract
This study presents a comprehensive analysis of the elliptic flow coefficient, , for charged hadrons at mid-rapidity in d+Au collisions at . Utilizing the AMPT model in both default and string melting modes, we examine the dependence of on transverse momentum, collision centrality, and particle type. Furthermore, we present scaled by participant eccentricity, which indicates a similar level of collectivity across different centrality intervals in d+Au collisions at within the AMPT-SM model. Our results indicate that the early-stage partonic phase significantly influences , as observed by variations in parton scattering cross-section, while the later stage hadronic rescattering shows minimal impact. Comparisons with STAR and PHENIX experimental data show that the AMPT model effectively captures the transverse momentum dependence of , underlining the importance of parton scattering mechanisms and the need for careful interpretation of experimental results in asymmetric systems.
Comments: 9 pages, 9 figures, updated as per the published version